Cooking apparatus
By positioning the fan assembly at the rear side of the cooking chamber and utilizing a compact blower placement, the cooking appliance addresses the challenge of maintaining a compact size while enhancing cooking gas removal performance.
Patent Information
- Application Number
- PCT/KR2023/020034
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-12-06
- Publication Date
- 2025-06-12
AI Technical Summary
Existing hood-type microwave ovens face challenges in maintaining a compact size while providing effective cooking gas removal performance, as the placement of the fan above the cooking chamber increases the vertical length and reduces suction airflow efficiency.
The cooking appliance features a fan assembly positioned at the rear side of the cooking chamber, with the blower placed in the rear space to minimize vertical and lateral dimensions, and an exhaust flow path formed by flow path plates to enhance airflow efficiency.
This configuration allows for improved cooking gas removal performance by reducing flow loss and maintaining a compact size, while also ensuring smooth exhaust flow and effective cooling of electrical components.
Smart Images

Figure KR2023020034_12062025_PF_FP_ABST
Abstract
Description
Cooking appliances
[0001] The present invention relates to a cooking appliance, and more particularly, to a cooking appliance that provides both a cooking function and a hood function.
[0002] Cooking appliances are a type of home appliance used for cooking food. They are installed in kitchens and cook food according to the user's preferences. These cooking appliances can be categorized in various ways based on the heat source, form, or type of fuel used.
[0003] Cooking appliances can be categorized by their cooking method. They can be categorized into open and closed types, based on the space in which the food is placed. Closed types include ovens and microwave ovens, while open types include cooktops and hobs.
[0004] A closed cooking appliance is a cooking appliance that seals the space where food is placed and heats the sealed space to cook the food. A closed cooking appliance has a chamber, or cooking chamber, provided within the main body of the appliance. This cooking chamber is essentially the space where the food is cooked. A heat source is provided within or outside the cooking chamber to heat the cooking chamber.
[0005] Among closed cooking appliances, a microwave oven is a cooking device that uses electricity to generate microwaves, which penetrate the food to be cooked inside the cooking chamber, and heat the food by causing molecular movement inside.
[0006] Microwave ovens are kitchen appliances that heat the inside and outside of food simultaneously by irradiating it with high-frequency waves from a magnetron. They are widely used due to their advantages, such as high thermal efficiency, which significantly reduces cooking time, reducing nutritional loss during the cooking, defrosting, and reheating process, and allowing food to be cooked directly while stored in a container.
[0007] Recently, microwave ovens with built-in hoods, also known as OTR (Over the Range) microwave ovens, have been released. These microwave ovens have a hood function that exhausts air containing foreign substances (hereinafter referred to as "cooking gas") generated during the cooking process in a cooking device installed below them, either to the outside or after filtering it and then releasing it indoors.
[0008] These microwave ovens with hoods are equipped with a fan to draw in and expel air. This fan is typically positioned above the cavity forming the cooking chamber. In other words, in microwave ovens with hoods, the fan is typically positioned higher than the cavity.
[0009] However, if the fan is positioned as described above, the distance between the intake port located at the bottom of the hood-type microwave oven and the fan will be greater than the vertical length of the cavity. With such a large distance between the intake port and the fan, the cooking gas collection performance of the hood-type microwave oven will inevitably decrease. This is because the velocity of the intake airflow generated by the fan can decrease inversely proportional to the square of the distance from the fan.
[0010] Furthermore, if the fan is positioned in the above-described location, the overall vertical length of the hood-cum-microwave oven will inevitably increase. This increase in vertical length of the hood-cum-microwave oven increases the likelihood that, when installed in the upper cabinet, the hood-cum-microwave oven will protrude further downward than the upper cabinet.
[0011] If the hood-type microwave oven protrudes further down than the upper cabinet, it not only looks bad, but it can also cause the gap between the cooktop installed under the upper cabinet and the hood-type microwave oven to narrow.
[0012] As the hood-type microwave oven protrudes below the upper cabinet, the gap between the cooktop and the hood-type microwave oven becomes narrower, which may cause the hood-type microwave oven to block the view of the user using the cooktop and narrow the cooking area of the cooktop.
[0013] The present invention provides a cooking appliance having an improved structure that can provide a hood function while suppressing an increase in the vertical length of the entire cooking appliance.
[0014] In addition, another object of the present invention is to provide a cooking appliance having an improved structure that can reduce the vertical length of the cooking appliance while suppressing an increase in the lateral and front-back length of the cooking appliance.
[0015] In addition, another object of the present invention is to provide a cooking appliance having an improved structure that can reduce flow loss occurring inside the cooking appliance while suppressing an increase in the volume of the entire cooking appliance.
[0016] Another object of the present invention is to provide a cooking appliance having an improved structure so as to lower the resistance of the internal part of the cooking appliance and ensure smooth exhaust flow.
[0017] In order to achieve the above purpose, one embodiment of the present invention is a cooking appliance characterized in that a fan assembly that draws air into the interior of the cooking appliance and then discharges it to the exterior of the cooking appliance is disposed at the rear side of a cavity forming a cooking chamber therein.
[0018] In addition, another form of the present invention is characterized in that a fan assembly that draws air into the interior of the cooking appliance and then discharges it to the exterior of the cooking appliance is disposed inside the cooking appliance, but is disposed in a space formed on the rear side of the cavity.
[0019] In addition, another form of the present invention is characterized in that a fan assembly that draws air into the interior of the cooking appliance and then discharges it to the exterior of the cooking appliance is disposed inside the cooking appliance, and is disposed in a space between the rear surface of a cavity forming a cooking chamber inside and a rear plate forming the rear exterior of the cooking appliance.
[0020] In addition, another form of the present invention is characterized in that at least one fan assembly is arranged in a rear space, which is a space between the rear surface of a cavity forming a cooking chamber inside and a rear plate forming a rear exterior of the cooking appliance, and at least one flow path formed by a plurality of flow path plates arranged in the rear space forms a passage connecting the fan assembly and an exhaust port and induces an exhaust flow.
[0021] In addition, another form of the present invention may include a main body having a cooking chamber formed therein and an intake port and an exhaust port; a blower for sucking air through the intake port and discharging the sucked air toward the exhaust port; and a flow path forming member for guiding the flow of air discharged from the blower.
[0022] In addition, it is preferable that a rear space portion be provided inside the main body, which is formed at a position tilted rearward from the cooking chamber and communicates with the intake port and the exhaust port.
[0023] In addition, it is preferable that the above-mentioned euro-forming member form an exhaust path that guides the flow of air discharged from the blower toward the exhaust port.
[0024] In addition, another form of the present invention may include a main body having a cooking chamber formed inside a cavity, a rear space portion arranged on the rear side of the cavity, a side space portion arranged on the side side of the cavity, and a corner space portion which is an area where the rear space portion and the side space portion overlap each other; a corner fan assembly arranged in the corner space portion to suck in air through an intake port and to suck in the sucked air laterally through an exhaust port; and a support member that supports the corner fan assembly so that the flow of air discharged from the exhaust port can be guided toward the rear space portion.
[0025] In addition, it is preferable that the above-mentioned support member form a wall that blocks the space between the side space and the rear space.
[0026] In addition, another form of the present invention may include a main body having a cooking chamber formed inside a cavity and a side space portion disposed on a side of the cavity; a partition plate dividing the side space portion into a lower electrical compartment and an upper electrical compartment; a cooling fan disposed in the lower electrical compartment; a blower disposed on a rear side of the cooling fan; and a support member forming a wall between the cooling fan and the blower portion.
[0027] In addition, it is preferable that a connecting passage be provided inside the main body to form a passage for air introduced into the lower electrical room by the cooling fan to be introduced toward the blower.
[0028] In addition, another form of the present invention may include a main body having a cooking chamber formed inside a cavity and an upper space portion disposed on the upper side of the cavity, an exhaust port opening the upper space portion to the outside, and a circulation air outlet forming a passage connecting the cooking chamber and the upper space portion; a blower unit that sucks air into the interior of the main body and discharges the sucked air into the upper space portion; and an exhaust duct that forms a passage inside the body that is connected to the circulation air outlet.
[0029] In addition, another form of the present invention may include a cavity forming a cooking chamber therein; a front plate disposed on the front side of the cavity; and a rear support member disposed on the rear side of the cavity.
[0030] In addition, another form of the present invention may include a cavity forming a cooking chamber therein; a rear plate disposed on the rear side of the cavity; and a rear support member disposed in a rear space portion, which is a space between the rear surface of the cavity and the rear plate.
[0031] Additionally, it is preferable that the lower end of the front plate is positioned lower than the cavity, and the rear support member contacts the bottom surface at a position lower than the cavity and supports the cavity.
[0032] In addition, another form of the present invention may include a main body having a cooking chamber formed inside a cavity and a side space portion arranged on a side of the cavity; a partition plate that divides the side space portion into a lower electrical chamber and an upper electrical chamber; a passage hole formed in the partition plate as a passage connecting the lower electrical chamber and the upper electrical chamber; and a covering member that is arranged to be spaced apart from the passage hole in a vertical direction by a predetermined distance and is provided to cover the passage hole from above or below.
[0033] In addition, another form of the present invention may include a main body having a cooking chamber formed inside a cavity and an upper space portion disposed above the cavity; a lamp installed on an upper surface of the cavity to illuminate the cooking chamber and at least a portion of which is exposed to the upper side of the cavity; and a lamp cover covering the lamp such that a space surrounding the lamp is separated from the upper space portion.
[0034] In addition, a cooking appliance according to one aspect of the present invention may include: a main body having a cooking chamber formed inside a cavity, a rear space portion arranged at the rear side of the cavity, and an upper space portion arranged at the upper side of the cavity, and an exhaust port opening the upper space portion to the outside; and a blower portion that draws air into the interior of the main body and discharges the drawn air to the upper space portion through the rear space portion.
[0035] In addition, the present invention may further include an expansion plate disposed inside the main body.
[0036] In addition, it is preferable that a side space portion be provided inside the main body to be positioned on the side of the cavity.
[0037] In addition, it is preferable that the above expansion plate divides the side space so that a part of the side space is separated into an expanded upper space.
[0038] In addition, the blower may include a fan assembly that sucks in air from the lower side of the upper space and discharges the sucked air into the upper space and the expanded upper space.
[0039] In addition, it is preferable that the exhaust port opens the upper space and the expanded upper space to the outside of the main body.
[0040] In addition, it is preferable that the above-mentioned expanded upper space portion is connected to the upper space portion above the above-mentioned side space portion.
[0041] In addition, the above-mentioned expanded upper space portion is preferably arranged on the upper side of the side space portion and on the side of the upper space portion, and is connected laterally to the upper space portion.
[0042] Additionally, it is preferable that the bottom surface of the upper space portion and the bottom surface of the extended upper space portion are arranged on the same plane.
[0043] Additionally, it is preferable that the upper surface of the cavity and the upper surface of the expansion plate are arranged on the same plane.
[0044] Additionally, it is preferable that the main body be provided with an intake port positioned lower than the cavity.
[0045] In addition, the blower includes a fan assembly that sucks in air flowing into the interior of the main body through the intake port, and it is preferable that the intake port and the side space portion are connected.
[0046] In addition, it is preferable that the upper space portion and the expanded upper space portion are connected as one to form an exhaust space on the upper side of the cavity and the side space portion, and that the exhaust port is connected to the exhaust space.
[0047] In addition, a power chamber is formed inside the main body, and side space portions are arranged on both sides of the lateral direction of the cavity, and it is preferable that the power chamber is arranged in one of the pair of side space portions.
[0048] It is also preferable that the expansion plate be placed in the other one of the pair of side space portions.
[0049] In addition, it is preferable that the expansion plate divides the side space and the rear space so that a portion of the side space and the rear space are separated into the expanded upper space.
[0050] In addition, the present invention may further include a flow path forming member that forms an exhaust path that guides the flow of air discharged from the blower toward the upper space.
[0051] In addition, the above-mentioned euro-forming member is preferably arranged in the rear space and between the main body room and the expansion plate.
[0052] In addition, it is preferable that the blower be placed in the rear space.
[0053] Additionally, with respect to the vertical direction, it is preferable that at least a portion of the expansion plate is disposed between the blower and the upper space.
[0054] In addition, it is preferable that the above-mentioned euro-forming member includes a first euro plate that forms a vertical wall that blocks a lateral passage formed between the blower and the expansion plate that are spaced apart in the vertical direction.
[0055] In addition, it is preferable that an exhaust space be provided inside the main body, which is arranged on the upper side of the cavity and the expansion plate.
[0056] In addition, it is preferable that the exhaust port opens the exhaust space to the outside of the main body.
[0057] In addition, it is preferable that the blower include a fan assembly that sucks in air from the lower side of the exhaust space and discharges the sucked air into the exhaust space.
[0058] Additionally, it is preferable that a plurality of the exhaust ports are arranged at the upper portion of the main body.
[0059] In addition, it is preferable that a circulation air outlet be provided inside the main body to form a passage connecting the cooking chamber and the upper space.
[0060] In addition, it is preferable that at least one of the plurality of exhaust ports be provided as a common exhaust port that discharges together the air that has flowed into the upper space by the blower and the air that has flowed into the upper space through the circulating air outlet.
[0061] Additionally, it is preferable that at least one of the plurality of exhaust ports arranged laterally is provided as the common exhaust port, which is located at a position furthest from the main chamber.
[0062] In addition, it is preferable that the main body be provided with a cold air inlet that opens the main body to the outside.
[0063] Additionally, it is preferable that a plurality of the above exhaust ports and the above cold air inlets are arranged laterally.
[0064] In addition, it is preferable that at least one of the plurality of exhaust ports arranged laterally is provided as the common exhaust port, which is positioned at the furthest position from the cold air inlet.
[0065] In addition, the present invention may further include an exhaust duct that guides the flow of air discharged from the cooking room to the circulation air outlet toward the common exhaust port.
[0066] In addition, it is preferable that the exhaust duct be provided with a duct outlet that opens the inside of the exhaust duct toward the common exhaust port.
[0067] Also, with respect to the lateral direction, it is preferable that the duct outlet be arranged at a position closest to the common exhaust port among the plurality of exhaust ports arranged laterally.
[0068] In addition, it is preferable that the above-mentioned common exhaust port is formed to penetrate vertically through the upper surface of the main body.
[0069] In addition, it is preferable that the duct outlet be arranged to overlap at least a portion of the common exhaust port in the vertical direction.
[0070] Additionally, it is preferable that at least one of the plurality of exhaust ports arranged laterally is provided as the common exhaust port, which is positioned closest to the expansion plate.
[0071] Additionally, it is preferable that at least a portion of the above-mentioned common exhaust port is arranged to overlap the above-mentioned expansion plate in the vertical direction.
[0072] The cooking appliance of the present invention can provide a hood function while suppressing an increase in the vertical length of the cooking appliance by having a blower for providing a hood function placed at the rear side of the cavity instead of the upper side of the cavity.
[0073] In addition, the present invention allows the blower to be placed in the rear space, which is a space secured for installing a convection module, instead of the upper space and side space inside the main body, thereby reducing the vertical length of the cooking appliance while effectively suppressing an increase in the vertical and lateral length of the cooking appliance, thereby providing a hood function with improved performance.
[0074] In addition, the present invention adopts a structure in which a blower is arranged in a rear space connected in a straight line with an exhaust port, thereby minimizing flow loss within the cooking appliance, thereby providing further improved cooking gas removal performance.
[0075] In addition, the present invention can effectively improve cooking gas discharge performance by smoothly guiding exhaust flow while lowering the flow resistance around the exhaust port through the exhaust flow path formed by the euro-forming member.
[0076] In addition, the present invention can provide an effect of enabling the force provided by the suction force of the fan assembly to be applied to the electrical compartment through the connecting passage, thereby enabling the air to flow more smoothly within the electrical compartment and enabling the cooling of electrical components placed in the electrical compartment to be performed more effectively.
[0077] In addition, the present invention can effectively increase the intake flow rate of the fan assembly by allowing air introduced into the main chamber to be introduced into the fan assembly through a connecting passage from the main chamber, thereby providing further improved cooking gas removal performance.
[0078] In addition, the present invention can effectively expand the size of the path required for the flow of air discharged through the exhaust space to the exhaust port by allowing the size of the entire exhaust space to be expanded by an expansion plate that divides the side space portion vertically.
[0079] In addition, the present invention can provide cooking gas removal performance equivalent to or superior to that of conventional cooking appliances with similar cooking capacity while having a smaller overall size by ensuring that a space associated with exhaust and a space associated with intake are each of sufficient sizes necessary for intake or exhaust by means of an expansion plate that divides the side space portion vertically.
[0080] In addition, the present invention enables steam and gas discharged from a cooking chamber and cooking gas sucked in through a blower to be discharged together through a common exhaust port, thereby effectively expanding the area of the exhaust port used for exhaust, thereby enabling cooking gas and the like to be discharged more smoothly through the exhaust port.
[0081] In addition, the present invention has an exhaust duct formed in a shape in which the height decreases toward the rear, thereby enabling steam and gas discharged from the cooking chamber to be smoothly discharged to the outside of the cooking appliance while effectively suppressing an increase in flow resistance caused by the exhaust duct.
[0082] In addition, the present invention enables the exhaust duct to be detachably connected to a duct bracket attached to a cavity, thereby enabling the exhaust duct to be easily and quickly separated from the cavity as needed, and suppressing damage to the cavity that may occur during the disassembly and reassembly of the exhaust duct.
[0083] In addition, the present invention provides a rear support member that serves to stably maintain the posture of the cavity so that the cavity does not fall backward during the process of assembling the cooking appliance, thereby enabling the assembly of the cooking appliance to be conveniently performed in a more stable environment, and preventing the occurrence of various safety accidents that may occur due to the cavity falling over during the process of assembling the cooking appliance.
[0084] In addition, the present invention can effectively improve the structural stability of a cooking appliance by stably supporting the rear plate and the base plate in the cavity using a rear support member installed on the rear side of the cavity.
[0085] In addition, the present invention can effectively increase the suction flow rate by maintaining the gap between the cavity and the rear plate using a rear support member so that sufficient space necessary for air flow in the rear space can be secured.
[0086] In addition, the present invention can provide the effect of significantly reducing the risk of fire spreading due to sparks generated inside the cooking appliance while allowing air to smoothly flow into the lower electrical compartment by providing a covering member that covers the lower electrical compartment from the upper side.
[0087] In addition, the present invention can satisfy the goal of shortening the vertical length of the cooking appliance and the goal of protecting the lamp from vapor and heat by providing a lamp cover that covers the lamp from the upper side.
[0088] In addition, the present invention can effectively suppress an increase in flow resistance caused by the lamp cover while protecting the lamp from vapor and heat by having a lamp cover formed in a shape in which the height decreases toward the rear.
[0089] In addition, the present invention can provide the effect of enabling maintenance work on the lamp to be performed easily and quickly by enabling access to the lamp through the simple operation of separating the vent grill and the opening / closing cover.
[0090] FIG. 1 is a perspective view illustrating a cooking appliance according to a first embodiment of the present invention.
[0091] Figure 2 is a drawing showing the cooking chamber open state of the cooking appliance illustrated in Figure 1.
[0092] Figure 3 is a bottom view showing the bottom of the cooking appliance illustrated in Figure 1.
[0093] Fig. 4 is a rear perspective view showing the cooking appliance illustrated in Fig. 1 with the cabinet removed.
[0094] Figures 5 and 6 are rear perspective views showing the cooking appliance illustrated in Figure 4 with the rear plate removed.
[0095] Figure 7 is a rear view of the cooking appliance illustrated in Figure 6.
[0096] Figure 8 is a perspective view showing the rear fan assembly illustrated in Figure 6 in an exploded view.
[0097] Figure 9 is a perspective view showing the corner fan assembly illustrated in Figure 6 in an exploded view.
[0098] Fig. 10 is a rear perspective view showing the euro-forming member illustrated in Fig. 6 in isolation.
[0099] Fig. 11 is a rear perspective view illustrating a cooking appliance to which another example of a euro-forming member is applied.
[0100] Fig. 12 is a rear perspective view showing the euro-forming member illustrated in Fig. 11 in isolation.
[0101] Fig. 13 is a rear view showing the air flow state in a cooking appliance according to the first embodiment of the present invention.
[0102] Fig. 14 is a rear perspective view showing a first state of a cooking appliance according to a first embodiment of the present invention.
[0103] Fig. 15 is a drawing showing the air flow state in the cooking appliance illustrated in Fig. 14.
[0104] Fig. 16 is a rear perspective view showing a second state of a cooking appliance according to the first embodiment of the present invention.
[0105] Fig. 17 is a drawing showing the air flow state in the cooking appliance illustrated in Fig. 16.
[0106] Fig. 18 is a rear perspective view showing a third state of a cooking appliance according to the first embodiment of the present invention.
[0107] Fig. 19 is a drawing showing the air flow state in the cooking appliance illustrated in Fig. 18.
[0108] Figure 20 is an enlarged view of the corner fan assembly and its surroundings.
[0109] Fig. 21 is a rear perspective view showing the support member illustrated in Fig. 20 in isolation.
[0110] Figure 22 is a rear perspective view illustrating a portion of a cooking appliance to which another example of a support member is applied.
[0111] Figure 23 is a rear perspective view showing the support member illustrated in Figure 22 in isolation.
[0112] Figure 24 is a drawing showing the state in which outside air is introduced into the battle room through the cold air inlet.
[0113] Figures 25 to 27 are drawings showing the flow state of air flowing into the battle room.
[0114] Figure 28 is a drawing showing the flow state of air flowing into the lower corner space through the connecting passage from the upper corner space.
[0115] Figure 29 is a rear perspective view illustrating a portion of a cooking appliance to which another example of a covering member is applied.
[0116] Fig. 30 is a rear perspective view showing the intake and exhaust states of a cooking appliance according to the first embodiment of the present invention.
[0117] Fig. 31 is a rear perspective view showing the air flow state inside the cooking appliance illustrated in Fig. 30.
[0118] Figure 32 is a plan view showing an enlarged view of the area around the common exhaust port shown in Figure 30.
[0119] Figure 33 is an enlarged view of the exhaust duct and its surroundings.
[0120] Figure 34 is a side cross-sectional view showing the side shape of the exhaust duct.
[0121] Figure 35 is a plan view showing a state in which a duct bracket is installed on the upper surface of the cavity.
[0122] Figure 36 is a drawing showing an exhaust duct installed on a duct bracket.
[0123] Figure 37 is an enlarged view of the lamp cover and its surroundings.
[0124] Fig. 38 is a plan view of the lamp cover illustrated in Fig. 37.
[0125] Figure 39 is a rear perspective view of a cooking appliance with another example of a lamp cover applied.
[0126] Figure 40 is a perspective view showing the lamp cover illustrated in Figure 39 in a detached state.
[0127] Figure 41 is an exploded perspective view showing the exploded state of the lamp cover illustrated in Figure 40.
[0128] Figure 42 is an exploded perspective view showing the exploded state of the vent grill and lamp cover.
[0129] FIG. 43 is a rear perspective view showing a state in which the rear fan assembly is removed from a cooking appliance according to the first embodiment of the present invention.
[0130] Figure 44 is a rear perspective view showing the rear support member illustrated in Figure 43 in isolation.
[0131] Figure 45 is a side view showing the state of the joint between the cavity and the rear support member.
[0132] Fig. 46 is a bottom perspective view showing an enlarged view of the joint portion of the cavity and the rear support member shown in Fig. 45.
[0133] Fig. 47 is a side view showing a state in which a rear plate is coupled to the rear support member illustrated in Fig. 45.
[0134] Figure 48 is a side cross-sectional view showing the joint structure between the cavity, the rear support member, and the rear plate.
[0135] Fig. 49 is a rear perspective view showing a state in which the cabinet is removed from a cooking appliance according to a second embodiment of the present invention.
[0136] Fig. 50 is a rear perspective view showing a state in which the cabinet is removed from a cooking appliance according to a third embodiment of the present invention.
[0137] Fig. 51 is a rear perspective view showing a state in which the cabinet is removed from a cooking appliance according to the fourth embodiment of the present invention.
[0138] The above-described objects, features, and advantages will be described in detail below with reference to the accompanying drawings, so that those skilled in the art can easily practice the technical idea of the present invention. In describing the present invention, if it is determined that a detailed description of known technologies related to the present invention may unnecessarily obscure the gist of the present invention, a detailed description thereof will be omitted. Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. In the drawings, the same reference numerals are used to indicate the same or similar components.
[0139] Although terms like "first" and "second" are used to describe various components, these components are not limited by these terms. These terms are used merely to distinguish one component from another, and unless otherwise specified, a "first" component may also be a "second" component.
[0140] The present invention is not limited to the embodiments disclosed below, but can be implemented in various forms and with various modifications. However, these embodiments are provided to ensure that the disclosure of the present invention is complete and to fully inform those skilled in the art of the scope of the invention. Therefore, the present invention is not limited to the embodiments disclosed below, but should be understood to include all modifications, equivalents, and substitutes included within the technical spirit and scope of the present invention, as well as substitutions or additions of the components of one embodiment with those of another embodiment.
[0141] The attached drawings are only intended to facilitate understanding of the embodiments disclosed in this specification, and the technical ideas disclosed in this specification are not limited by the attached drawings, and should be understood to include all modifications, equivalents, or substitutes included in the spirit and technical scope of the present invention. In the drawings, the components may be expressed in an exaggerated size or thickness for convenience of understanding, etc., but the scope of protection of the present invention should not be construed as being limited due to this.
[0142] The terminology used in this specification is only used to describe specific implementations or examples and is not intended to limit the present invention. In addition, the singular expression includes the plural expression unless the context clearly indicates otherwise. In the specification, terms such as "comprises" and "consists of" are intended to indicate the presence of a feature, number, step, operation, component, part, or combination thereof described in the specification. In other words, it should be understood that terms such as "comprises" and "consists of" in the specification do not exclude in advance the possibility of the presence or addition of one or more other features, numbers, steps, operations, components, parts, or combinations thereof.
[0143] Terms that include ordinal numbers, such as first, second, etc., may be used to describe various components, but the components are not limited by these terms. These terms are used solely to distinguish one component from another.
[0144] When a component is referred to as being "connected" or "connected" to another component, it should be understood that it may be directly connected or connected to that other component, but that there may be other components intervening. Conversely, when a component is referred to as being "directly connected" or "connected" to another component, it should be understood that there are no other components intervening.
[0145] When a component is referred to as being "above" or "below" another component, it should be understood that it is not only positioned directly above that other component, but that there may also be other components present in between.
[0146] Unless otherwise defined, all terms used herein, including technical or scientific terms, have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. Terms defined in commonly used dictionaries should be interpreted as having a meaning consistent with their meaning in the context of the relevant technology, and will not be interpreted in an idealized or overly formal sense unless explicitly defined herein.
[0147] When the cooker is placed on the floor, the direction in which the door is installed relative to the center of the cooker is defined as the front. Therefore, the direction in which the door opens and the cooker enters is the rear. For convenience, these forward and rearward directions can be referred to as the first direction. Therefore, the front can be considered one side of the first direction, and the rear can be considered the other side of the first direction.
[0148] Additionally, we can define the direction of gravity as downward, and the opposite direction of gravity as upward.
[0149] Also, the horizontal direction perpendicular to the forward-backward direction of the cooking appliance, i.e., the width direction of the cooking appliance when looking at it from the front of the cooking appliance door, can be referred to as the left-right direction. For convenience, the left-right direction can be referred to as the second direction. Then, the right side can be considered one side of the second direction, and the left side can be considered the other side of the second direction.
[0150] Additionally, the width direction of the above cooking appliance may be referred to as the lateral direction. Then, the right side may be referred to as one side of the lateral direction, and the left side may be referred to as the other side of the lateral direction.
[0151] And, the above-mentioned up-down direction can be called the third direction. Then, the up direction can be said to be one side of the third direction, and the down direction can be said to be the other side of the third direction.
[0152] Additionally, the vertical direction described above can be called the vertical direction. Then, the horizontal direction can be included including the front-back direction and the left-right direction, that is, the first direction and the second direction.
[0153] Throughout the specification, when we refer to "A and / or B", this means A, B, or A and B, unless otherwise stated, and when we refer to "C to D", this means C or more and D or less, unless otherwise stated.
[0154] [Overall structure of the cooking appliance]
[0155] Fig. 1 is a perspective view illustrating a cooking appliance according to a first embodiment of the present invention, and Fig. 2 is a drawing showing a state in which a cooking chamber of the cooking appliance illustrated in Fig. 1 is open. In addition, Fig. 3 is a bottom view showing the bottom of the cooking appliance illustrated in Fig. 1, and Fig. 4 is a rear perspective view showing a state in which a cabinet is removed from the cooking appliance illustrated in Fig. 1.
[0156] Referring to FIGS. 1 to 4, a cooking appliance according to one embodiment of the present invention has an exterior formed by a main body (10). The main body (10) may be provided in a shape that includes a substantially rectangular parallelepiped shape, and may be formed of a material having a predetermined strength to protect a plurality of components installed in its internal space. The main body (10) may include a cavity (11), a cabinet (13), and a base plate (14).
[0157] The cavity (11) can form the internal skeleton of the main body (10). This cavity (11) can be formed in the shape of a hexahedron with an open front. A cooking chamber (10a) can be formed inside the cavity (11). The cooking chamber (10a) can be formed in a shape corresponding to the internal shape of the cavity (11), i.e., in the shape of a hexahedron with an open front.
[0158] The cooking chamber (10a) may be formed in the form of a hexahedron with an open front. While the cooking chamber (10a) is sealed, cooking can be accomplished by heating the interior space of the cooking chamber (10a). In other words, in a cooking appliance, the interior space of the cooking chamber (10a) is essentially the space where food is cooked.
[0159] A front plate (12) may be placed in front of the cavity (11). This front plate (12) may form the front appearance of the main body (10) in front of the cavity (11). As an example, the front plate (12) may be provided in the form of a metal plate with a hollow portion formed therein.
[0160] The cabinet (13) can form the exterior of the main body (10) from the outside of the cavity (11). This cabinet (13) can cover the cavity (11) from the top and sides and form the exterior of the main body (10).
[0161] The base plate (14) can be placed on the lower side of the cavity (11). This base plate (14) forms the bottom surface of the cooking appliance and can cover the cavity (11) on the lower side of the cavity (11).
[0162] In addition, the main body (10) may further include a rear plate (15). The rear plate (15) may be placed on the rear side of the cavity (11). This rear plate (15) forms the rear surface of the cooker and may cover the cavity (11) on the rear side of the cavity (11).
[0163] The above rear plate (15) may be formed integrally with the cabinet (13) or may be formed separately from the cabinet (13).
[0164] At the front of the main body (10), a door (20) that selectively opens and closes the cooking chamber (10a) may be provided in a pivotable manner. The door (20) can open and close the cooking chamber (10a) in a side-swing manner in which the other side of the door (20) rotates left and right around one side of the door.
[0165] This door (20) may be formed in a hexahedral shape having a predetermined thickness as a whole. A hinge may be installed between the main body (10) and the door (20). The hinge may be arranged on one lateral side of the main body (10) to rotatably connect one lateral side of the door (20) to the main body (10). The door (20) may be rotatably connected to the hinge on the front side of the main body (10) and may open and close the cooking chamber (10a) by rotating around the hinge.
[0166] Additionally, a cooking chamber heat source for heating the inside of the main body (10) is provided. The cooking chamber heat source may be implemented as one type or as two or more types.
[0167] In this embodiment, the cooking chamber heat source is exemplified by including a magnetron capable of supplying a high-frequency heat source inside the cooking chamber (10a). At this time, the magnetron may be installed inside the main body (10), but may be installed so as to be located at the top or side of the cooking chamber (10a).
[0168] In addition, inside the main body (10), an electric field chamber (10b, 10c, 10d) may be formed, which is positioned at the upper or side of the cooking chamber (10a) within the main body (10). In the present embodiment, it is exemplified that the magnetron and electric field chamber (10b, 10c, 10d) are positioned at the side of the cooking chamber (10a). Electric components such as a magnetron and a high-voltage transformer may be installed inside the electric field chamber (10b, 10c, 10d).
[0169] Additionally, a control panel (25) may be provided on the front side of the main body (10). As an example, the control panel (25) may be placed on the door (20).
[0170] The control panel (25) may be formed in the form of a hexahedron having a predetermined internal space, and an input unit for inputting an operation signal for the user to operate the cooking appliance may be provided on the front of the control panel (25). A number of operation switches are provided on the input unit, through which the user can directly input an operation signal.
[0171] As another example, the control panel (25) may be placed on the front side of the cavity (11). This control panel (25) may be placed in an area that does not overlap with the cooking chamber (10a) in the front-back direction. For example, the power compartments (10b, 10c, 10d) may be placed on the side of the cooking chamber (10a), and the control panel (25) may be placed on the front side of the power compartments (10b, 10c, 10d).
[0172] In addition, the cooking appliance of the present embodiment may further include a blower (100, 200). In addition, the main body (10) may be provided with an intake port (1) and an exhaust port (2, 3, 4).
[0173] The blower (100, 200) is housed inside the cooking appliance, and can suck in cooking gas through the intake port (1) and discharge the sucked cooking gas to the outside of the cooking appliance through the exhaust port (2, 3, 4).
[0174] [Intake, exhaust, and space]
[0175] FIGS. 5 and 6 are rear perspective views showing the cooking appliance illustrated in FIG. 4 with the rear plate removed, and FIG. 7 is a rear view of the cooking appliance illustrated in FIG. 6.
[0176] Referring to FIGS. 3 to 7, the intake port (1) may be positioned on the bottom of the cooking appliance. For example, the intake port (1) may be provided on the base plate (14). This intake port (1) may form a passage at the bottom of the cooking appliance for the cooking gas to flow into the interior of the cooking appliance. In the present embodiment, a pair of intake ports (1) is exemplified as being positioned on the lower side of the blower (100, 200).
[0177] The base plate (14) may be positioned at a predetermined distance downward from the bottom surface of the cavity (11). Accordingly, a lower space (omitted) may be formed between the bottom surface of the cavity (11) and the base plate (14). By virtue of the lower space formed in this manner, a space necessary for external air to be introduced into the cooking appliance through the intake port (1) may be provided above the intake port (1).
[0178] The exhaust ports (2, 3, 4) may be positioned on the upper side of the cooking appliance. These exhaust ports (2, 3, 4) may form a passage on the upper side of the cooking appliance for discharging cooking gas sucked into the interior of the cooking appliance to the outside of the cooking appliance.
[0179] In this embodiment, it is exemplified that the cooking appliance is provided with a first exhaust port (2), a second exhaust port (3), and a third exhaust port (4).
[0180] The first exhaust port (2) and the second exhaust port (3) can be arranged on the upper surface of the main body (10). The first exhaust port (2) and the second exhaust port (3) can form a passage at the top of the cooking appliance for discharging cooking gas sucked into the interior of the cooking appliance to the outside of the cooking appliance.
[0181] As an example, the first exhaust port (2) and the second exhaust port (3) may be provided on the upper surface of the cabinet (13). The first exhaust port (2) and the second exhaust port (3) may be formed to penetrate the upper surface of the cabinet (13) in the vertical direction.
[0182] Among these, the first exhaust port (2) may be arranged on the rear side of the main body (10). And the second exhaust port (3) may be arranged on the front side of the main body (10). That is, the second exhaust port (3) may be arranged on the side adjacent to the door (20) and may be arranged to be biased toward the front side compared to the first exhaust port (2).
[0183] The first exhaust port (2) can form a passage for discharging cooking gas sucked into the cooking appliance to the outside. And the second exhaust port (3) can form a passage for discharging cooking gas sucked into the cooking appliance to the inside.
[0184] As an example, the first exhaust port (2) may be positioned in an area that overlaps vertically with the upper storage unit installed on the upper side of the cooking appliance. In addition, the second exhaust port (3) may be positioned in a position that protrudes forward from the upper storage unit.
[0185] Additionally, the first exhaust port (2) may be arranged approximately at the center of the lateral direction of the main body (10). And, on the front side of the main body (10), a plurality of second exhaust ports (3) may be arranged along the lateral direction.
[0186] As described above, the first exhaust port (2) arranged approximately at the lateral center of the main body (10) can be connected to an exhaust pipe connected to the outdoors. In addition, a plurality of second exhaust ports (3) arranged laterally can discharge cooking gas from the front side of the upper storage compartment toward the upper side of the cooking appliance. At this time, the cooking gas can be discharged through the second exhaust port (3) in a filtered state inside the cooking appliance.
[0187] The third exhaust port (4), like the first exhaust port (2), can form a passage for discharging cooking gas sucked into the cooking appliance to the outdoors. The third exhaust port (4) can be positioned facing the wall on which the cooking appliance is installed. This third exhaust port (4) can be connected to an exhaust pipe installed on the wall and connected to the outdoors.
[0188] The third exhaust port (4) is arranged on the back of the cooking appliance and may be arranged above the blower (100, 200). As an example, the third exhaust port (4) may be provided in the rear plate (15). This third exhaust port (4) may be formed to penetrate the rear plate (15) in the front-back direction.
[0189] A space may be formed inside the main body (10). This space may be positioned between the cavity (11) and the cabinet (13).
[0190] The above space portion can be divided into a side space portion (10e) and a rear space portion (10f). The side space portion (10e) can be arranged on each of the lateral sides of the cavity (11). And the rear space portion (10f) can be arranged on the rear side of the cavity (11).
[0191] For example, the side space (10e) may be a space formed between the side of the cavity (11) and the side of the cabinet (13). And the rear space (10f) may be a space formed between the back surface of the cavity (11) and the rear plate (15).
[0192] The side space (10e) and the rear space (10f) can be connected to the lower space. The side space (10e) and the rear space (10f) can be connected to the lower space in the vertical direction or in the lateral direction. The intake port (1) is connected to the lower space, and can be connected to the intake port (1) through the lower space of the side space (10e) and the rear space (10f).
[0193] A power unit (10b, 10c, 10d) may be arranged in one of the side spaces (10e). In the present embodiment, the power unit (10b, 10c, 10d) is exemplified as being arranged in a side space located on the rear side of the control panel (25).
[0194] Additionally, a space may be formed inside the main body (10) that is located at the rear side of the cavity (11) and at the side side of the cavity (11). This space may be a rear space (10f), a side space (10e), or a main chamber (10b, 10c, 10d).
[0195] For example, the space may be arranged at a rear corner portion inside the main body (10). Hereinafter, the space arranged at the rear side of the main body (10b, 10c, 10d) will be referred to as a corner space (10e). The rear space (10f) and the side space (10e), more specifically, the rear space (10f) and the main body (10b, 10c, 10d), may be connected through the corner space (10e).
[0196] The blower (100, 200) may be placed inside the main body (10). More specifically, the blower (100, 200) may be placed in a space, i.e., a space between the cavity (11) and the cabinet (13). The blower (100, 200) may include at least one fan assembly (100, 200).
[0197] The fan assembly (100, 200) can generate an airflow to draw in cooking gas from outside the cooking appliance and then discharge it outside the cooking appliance. This fan assembly (100, 200) can draw in cooking gas into the main body (10) through the intake port (1) and discharge the drawn-in cooking gas through the exhaust port (2, 3, 4).
[0198] At least one of the fan assemblies (100, 200) provided in the blower (100, 200) may be placed in the rear space (10f). Accordingly, the cooking gas introduced into the main body (10) through the intake port (1) may pass through the rear space (10f) and then be discharged through the first exhaust port (2) or the second exhaust port (3). The specific arrangement structure of the fan assemblies (100, 200) will be described later.
[0199] In addition, an upper space (10i) may be further provided inside the main body (10). The upper space (10i) may be placed on the upper side of the cavity (11).
[0200] For example, the upper space (10i) can be formed between the upper surface of the cavity (11) and the upper surface of the cabinet (13). This upper space (10i) can be connected to the rear space (10f).
[0201] That is, air drawn into the rear space (10f) can pass through the upper space (10i) and be discharged to the outside of the cooking appliance through the exhaust ports (2, 3, 4). In addition, air drawn into the side space (10e) can also pass through the rear space (10f) and the upper space (10i) and be discharged to the outside of the cooking appliance through the exhaust ports (2, 3, 4).
[0202] [Fan Assembly]
[0203] Fig. 8 is a perspective view showing the rear fan assembly shown in Fig. 6 in an exploded manner, and Fig. 9 is a perspective view showing the corner fan assembly shown in Fig. 6 in an exploded manner.
[0204] Referring to FIGS. 1 and 7 to 8, the blower (100, 200) may include at least one fan assembly (100, 200). As an example, the blower (100, 200) may include a rear fan assembly (100).
[0205] The rear fan assembly (100) may include a fan housing (110), an impeller (120), and a fan motor.
[0206] The fan housing (110) forms the exterior of the rear fan assembly (100) and can accommodate an impeller (120) therein. A first intake port (112) can be formed on the side of the fan housing (110). The first intake port (112) can form a passage in the fan housing (110) necessary for air from outside the rear fan assembly (100) to be sucked into the interior of the impeller (120).
[0207] In this embodiment, the fan housing (110) is exemplified as being formed in a shape including a lying cylindrical shape with both sides open, and the open sides of the fan housing (110) can be provided as a first suction port (112).
[0208] A space for accommodating an impeller (120) can be formed inside the fan housing (110).
[0209] A receiving space for receiving an impeller (120) may be formed inside the fan housing (110). In addition, the inner surface of the fan housing (110) facing this receiving space may be formed into a curved surface that surrounds the outer surface of the impeller (120).
[0210] The first discharge port (114) may be provided on the upper side of the fan housing (110). The first discharge port (114) forms a passage through which air sucked into the receiving space where the impeller (120) is received is discharged to the outside of the blower (100, 200).
[0211] The above first discharge port (114) may be formed in a form that penetrates the fan housing (110) in the vertical direction. Accordingly, air sucked laterally into the fan housing (110) through the first suction port (112) may be discharged to the upper side of the fan housing (110) through the first discharge port (114).
[0212] The impeller (120) is configured to be rotatable around an axis extending laterally. A space is formed inside the impeller (120) into which air is sucked in through the side of the impeller (120).
[0213] The above impeller (120) can be connected to the rotational axis of the fan motor. The rotational axis of the fan motor rotates around an axis that extends laterally, and the impeller (120) connected to the rotational axis of the fan motor can rotate around an axis that extends laterally together with the rotational axis of the fan motor.
[0214] The rear fan assembly (100) provided as described above is disposed inside the main body (10), and may be disposed in at least one of the rear space (10f) and the corner space (10e). In the present embodiment, the rear fan assembly (100) is exemplified as being disposed in the rear space (10f).
[0215] As an example, the rear fan assembly (100) may be provided in a form including a pair of impellers (120). Such a rear fan assembly (100) may be provided in a form in which a fan motor is arranged between a pair of impellers (120) arranged laterally.
[0216] In the rear fan assembly (100), the fan motor can rotate a pair of impellers (120) arranged on both sides thereof together. Each impeller (120) can be accommodated inside a pair of fan housings (110) arranged on both sides of the fan motor.
[0217] As described above, the rear fan assembly (100) including one fan motor, a pair of impellers (120) and a fan housing (110) can suck in air through a pair of first intake ports (112) arranged on each of the lateral sides of the rear fan assembly (100) and discharge air through a pair of first discharge ports (114) arranged on the upper side of the rear fan assembly (100).
[0218] The above rear fan assembly (100) may be provided in a form in which a pair of impellers (120) and a fan housing (110) are arranged on both sides of a fan motor. Hereinafter, the assembly of the impeller (120) and the fan housing (110) will be referred to as a "fan module." Accordingly, it can be said that each rear fan assembly (100) is provided in a form in which a pair of fan modules are connected to both sides of a fan motor.
[0219] The rear fan assembly (100) may be placed in the rear space (10f), that is, the space formed between the rear surface of the cavity (11) and the rear plate (15). The rear fan assembly (100) may be placed in a space that communicates with the intake port (110) and the exhaust ports (2, 3, 4), and may suck in air through the intake port (110) and discharge air toward the exhaust ports (2, 3, 4).
[0220] Additionally, the rear fan assembly (100) can be placed at the lateral center of the rear space (10f). That is, the rear fan assembly (100) can be placed approximately at the rear center inside the cooking appliance.
[0221] According to the present embodiment, the first exhaust port (2) is arranged approximately at the lateral center of the main body (10), but may be arranged at a position tilted rearward on the upper surface of the cabinet (13). In addition, the first exhaust port (2) may be arranged in an area that vertically overlaps with the fan assembly (100, 200). That is, the first exhaust port (2) may be arranged in an area that vertically overlaps with the rear space (10f) and the rear fan assembly (100).
[0222] In addition, the third exhaust port (4) may be positioned approximately in the lateral center of the main body (10), but may be positioned upwardly from the rear plate (15). That is, the third exhaust port (4) may be positioned on the rear surface of the main body (10), but may be positioned adjacent to the first exhaust port (2).
[0223] In the cooking appliance of the present embodiment, the first exhaust port (2), the third exhaust port (4), and the rear fan assembly (100) are all arranged in the rear space (10f), and the first exhaust port (2) and the third exhaust port (4), particularly the first exhaust port (2), can be arranged vertically with the rear fan assembly (100) on the rear space (10f).
[0224] That is, the rear fan assembly (100), the rear space (10f), the first exhaust port (2), and the third exhaust port (4) can be arranged in positions that overlap in the vertical direction. Preferably, the rear fan assembly (100), the rear space (10f), the first exhaust port (2), and the third exhaust port (4) can be arranged in a row in the vertical direction.
[0225] Accordingly, the air flow caused by the operation of the rear fan assembly (100) can be made in the same straight direction as the arrangement direction of the rear fan assembly (100), the rear space (10f), the first exhaust port (2), and the third exhaust port (4).
[0226] As air flows in a straight line like this, the resistance to air flow is reduced, allowing air to flow more smoothly. Accordingly, the air intake and exhaust performance of the rear fan assembly (100) can be improved, and thus the cooking gas removal performance of the cooking appliance can be improved accordingly.
[0227] The blower (100, 200) of the present embodiment may include a plurality of fan assemblies (100, 200) arranged laterally. As an example, the blower (100, 200) may further include a corner fan assembly (200), as illustrated in FIGS. 7 and 9. The rear fan assembly (100) and the corner fan assembly (200) may be arranged laterally in the rear space (10f).
[0228] The corner fan assembly (200) may be provided in a form in which one fan module is connected to a fan motor. As an example, the corner fan assembly (200) may be provided in a form in which one fan module is connected to the lower side of the fan motor.
[0229] In this corner fan assembly (200), the impeller (220) can rotate around an up-down axis. The second suction port (212) can be arranged on the lower side of the fan housing (210), and the second discharge port (224) can be arranged on the side of the fan housing (210).
[0230] That is, the corner fan assembly (200) can be provided in a form similar to that in which roughly half of the rear fan assembly (100) is erected vertically.
[0231] In the rear space (10f), a rear fan assembly (100) and a corner fan assembly (200) may be arranged together. As an example, the rear fan assembly (100) and the corner fan assembly (200) may be arranged laterally in the rear space (10f).
[0232] For example, the corner fan assembly (200) may be placed on the side adjacent to the main chamber (10b, 10c, 10d), and the rear fan assembly (100) may be placed on the side adjacent to the side space (10e) on the opposite side.
[0233] At least a portion of the corner fan assembly (200) may be disposed in the corner space portion (10e). As an example, most of the area of the corner fan assembly (200) may be disposed in the corner space portion (10e), and the second intake port (212) of the corner fan assembly (200) may also be disposed in the corner space portion (10e). The corner fan assembly (200) may be disposed laterally spaced apart from the rear fan assembly (100) by a predetermined distance.
[0234] According to the present embodiment, instead of including only a plurality of rear fan assemblies (100), the blower (100, 200) may include both a rear fan assembly (100) and a corner fan assembly (200).
[0235] As the rear fan assembly (100) and the corner fan assembly (200) are applied together to the blower (100, 200) in this way, the lateral length of the entire blower (100, 200) can be reduced compared to a case where the blower (100, 200) includes only a plurality of rear fan assemblies (100).
[0236] For example, the lateral length of a blower (100, 200) including one rear fan assembly (100) and one corner fan assembly (200) can be measured shorter than that of a blower (200) including a pair of rear fan assemblies (100) arranged laterally.
[0237] The corner fan assembly (200) is provided in a form that includes not only some of the fan modules included in the rear fan assembly (100), but also fan modules that are vertically erected. Therefore, the lateral length of the corner fan assembly (200) is bound to be much shorter than that of the rear fan assembly (100) and the rear fan assembly (100).
[0238] Considering these points, it can be said that the blower (100, 200) of the present embodiment including the corner fan assembly (200) can be provided in a significantly smaller size compared to the blower including only the rear fan assembly (100) or the rear fan assembly (100).
[0239] When a blower (100, 200) of this type is applied to a cooking appliance, the size of the cooking appliance, especially the lateral length of the cooking appliance, can be reduced as the space occupied by the blower (100, 200) becomes smaller.
[0240] Considering these points, when the size of the cooking appliance is slightly small for arranging multiple rear fan assemblies (100) inside the cooking appliance, the blower (100, 200) of the present embodiment can be said to be very suitable for application to the cooking appliance.
[0241] Additionally, in the corner fan assembly (200), the second suction port (212) may be positioned at the lower side of the fan housing (210). Accordingly, the second suction port (212) may be positioned at the lowest end of the corner fan assembly (200) and may be positioned very close to the suction port (1) provided at the bottom of the cooking appliance.
[0242] Considering that the suction performance of the fan assembly can be significantly improved compared to the output of the fan motor as the distance between the second suction port (212) and the suction port (1) becomes closer, it can be seen that the suction performance of the corner fan assembly (200) can be significantly improved as the second suction port (212) of the corner fan assembly (200) becomes closer to the suction port (1).
[0243] That is, although the performance of the corner fan assembly (200) may be lower than that of the rear fan assembly (100), this performance difference can be largely offset by the performance improvement obtained by shortening the distance between the second intake port (212) and the intake port (1).
[0244] Considering these points, it can be evaluated that the blower (100, 200) of the present embodiment can provide a cooking gas removal performance that is at least as good as that of other types of blowers while contributing to the miniaturization of the cooking appliance.
[0245] The cooking appliance of this embodiment including the blower (100, 200) as described above can provide improved cooking gas removal performance while maintaining a compact size.
[0246] Meanwhile, referring to FIGS. 5 to 7, the rear fan assembly (100) and the corner fan assembly (200) can be positioned to overlap the cavity (11) in the front-rear direction. That is, the rear fan assembly (100) and the corner fan assembly (200) can be positioned between the upper surface and the lower surface of the cavity (11) in the vertical direction.
[0247] In order for the air that has entered the interior of the main body (10) through the intake port (1) to smoothly move toward the rear fan assembly (100) or the corner fan assembly (200), a certain distance must be secured between the rear fan assembly (100) and the corner fan assembly (200) and the intake port (1).
[0248] In addition, in order for the air discharged from the rear fan assembly (100) and the corner fan assembly (200) to move smoothly toward the upper space (10i), it is preferable that the rear fan assembly (100) and the corner fan assembly (200) be positioned lower than the upper space (10i).
[0249] When the rear fan assembly (100) and the corner fan assembly (200) are positioned higher than the upper space (10i), a problem may occur in which the passage between the first discharge port (114) of the rear fan assembly (100) or the corner fan assembly (200) and the upper space (10i) becomes too narrow.
[0250] Taking these points into consideration, in this embodiment, the rear fan assembly (100) and the corner fan assembly (200) are arranged in positions where the rear fan assembly (100) and the corner fan assembly (200) and the intake port (1) and the rear fan assembly (100) and the corner fan assembly (200) and the upper space (10i) can be appropriately spaced apart.
[0251] Accordingly, the flow of air from the intake port (1) to the rear fan assembly (100) and the corner fan assembly (200) and the flow of air from the rear fan assembly (100) and the corner fan assembly (200) to the upper space (10i) can be smoothly achieved.
[0252] In addition, the corner fan assembly (200) can be positioned closer to the intake port (1) than to the exhaust port (113, 115, 117). Accordingly, the second intake port (212) of the corner fan assembly (200) can be positioned very close to the intake port (1). As a result, the intake performance of the corner fan assembly (200), which is relatively small in size and has low output compared to the rear fan assembly (100), can be effectively improved.
[0253] [Example of a euro formation absence]
[0254] Fig. 10 is a rear perspective view illustrating the flow path forming member illustrated in Fig. 6 in isolation, and Fig. 11 is a rear perspective view illustrating a cooking appliance to which another example of the flow path forming member is applied. In addition, Fig. 12 is a rear perspective view illustrating the flow path forming member illustrated in Fig. 11 in isolation, and Fig. 13 is a rear perspective view illustrating the air flow state in a cooking appliance according to the first embodiment of the present invention.
[0255] Referring to FIGS. 5 to 7 and 10, the cooking appliance may include a flow-forming member (30). The flow-forming member (30) is provided to induce the flow of air discharged from the blower (100, 200).
[0256] The exhaust path forming member (30) can form an exhaust path (A) inside the cooking appliance. The exhaust path (A) can connect between the blower (100, 200) and the upper space (10i), and is provided to guide air flow from at least one of the rear fan assembly (100) and the corner fan assembly (200) to the upper space (10i). This exhaust path (A) can guide the flow of air discharged from the blower (100, 200) toward the exhaust port (2, 3, 4).
[0257] As an example, the exhaust path (A) may be arranged in the rear space (10f). The inlet of the exhaust path (A) may be opened toward the blower (100, 200). For example, the inlet of the exhaust path (A) may be opened toward the first discharge port (114) of the rear fan assembly (100) and the second intake port (214) of the corner fan assembly (200). In addition, the outlet of the exhaust path (A) may be opened toward the upper space (10i).
[0258] The exhaust path (A) can be formed inside the cooking appliance as a path that guides air flow from the first outlet (114) of the rear fan assembly (100) to the upper space (10i). In addition, the exhaust path (A) can be formed inside the cooking appliance as a path that guides air flow from the second intake port (214) of the corner fan assembly (200) to the upper space (10i).
[0259] As an example, at least a portion of the exhaust passage (A) may be formed by a first passage plate (31). The first passage plate (31) may form a wall between the first intake port (112) and the first discharge port (114) of the rear fan assembly (100).
[0260] This first euro plate (31) is arranged in the rear space (10f) and can be arranged on the upper side of the rear fan assembly (100). That is, the first euro plate (31) can form a wall blocking the first intake port (112) and the first discharge port (114) on the upper side of the rear fan assembly (100).
[0261] According to the present embodiment, a rear fan assembly (100) and corner spaces (10g, 10h) may be arranged laterally in the rear space (10f). In the rear space (10f), the first suction ports (112) may be arranged on each of the lateral sides of the rear fan assembly (100). In addition, the first discharge port (114) may be arranged between a pair of first suction ports (112) that are arranged laterally spaced apart from each other by a predetermined distance, and may be arranged on the upper surface of the rear fan assembly (100).
[0262] If one of the pair of first suction ports (112) arranged closer to the corner space (10g, 10h) is referred to as the left first suction port (112), the first flow plate (31) is arranged to form a wall that blocks the space between the first discharge port (114) and the right first suction port (112). This first flow plate (31) can be arranged at a position that is tilted toward the right first suction port (112) from the lateral center of the rear fan assembly (100), i.e., at a position adjacent to the right first suction port (112).
[0263] Hereinafter, the direction toward the front chamber (10b, 10c, 10d) along the lateral direction from the lateral center of the cooking appliance is referred to as the left, and the direction toward the side space (10e) located on the opposite side is referred to as the right.
[0264] The above first flow plate (31) can form a vertical wall extending upward from the upper surface of the rear fan assembly (100) in which the first discharge port (114) is formed toward the upper space (10i). This first flow plate (31) can define the right boundary surface of the exhaust flow path (A).
[0265] Meanwhile, the cooking appliance of the present embodiment may further include an expansion plate (18). The expansion plate (18) may be arranged to block the space between the upper space (10i) and the rear space (10f).
[0266] At least a portion of the expansion plate (18) may be placed in the rear space (10f). At least a portion (18a; hereinafter referred to as “rear compartment”) of the expansion plate (18) placed at that location may be placed between the rear fan assembly (100) and the upper space (10i) in the vertical direction. In addition, the rear compartment (18b) of the expansion plate (18) may be placed between the rear surface of the cavity (11) and the rear plate (15) in the front-rear direction.
[0267] The rear compartment (18b) of the expansion plate (18) arranged in this manner covers a portion of the rear space (10f) at a position higher than the rear fan assembly (100) and blocks a portion of the rear space (10f) and the upper space (10i).
[0268] In this embodiment, it is exemplified that the area between the right side of the rear space (10f) and the upper space (10i) is blocked by an expansion plate (18).
[0269] The above expansion plate (18) and the rear fan assembly (100) are spaced apart vertically, and thus a lateral passage is formed between the expansion plate (18) and the rear fan assembly (100). The lateral passage formed at this time can connect between the right area covered by the expansion plate (18) among the rear space portion (10f) and the upper area of the rear fan assembly (100) where the exhaust path (A) is formed.
[0270] The first euro plate (31) may form a vertical wall extending upward from the rear fan assembly (100) toward the expansion plate (18). As an example, the first euro plate (31) may form a vertical wall connecting the upper surface of the rear fan assembly (100) and the side end of the expansion plate (18). At least a portion of the first euro plate (31) may protrude upward from the expansion plate (18).
[0271] As described above, the first flow plate (31) connected to the expansion plate (18) can form a vertical wall that blocks the lateral passage formed between the rear fan assembly (100) and the expansion plate (18). That is, the first flow plate (31) can form a wall in the rear space (10f) that blocks the air flow between the right area of the rear space (10f) and the exhaust passage (A).
[0272] Additionally, the euro forming member (30) may further include a second euro plate (32). The second euro plate (32) may form a wall that blocks the first intake port (112) and the first discharge port (114) of the rear fan assembly (100).
[0273] The second euro plate (32) may be placed on the left side of the rear fan assembly (100). Accordingly, the rear fan assembly (100) may be placed between the first euro plate (31) and the second euro plate (32) in the lateral direction.
[0274] In the lateral direction, the second flow plate (32) can be arranged between the rear fan assembly (100) and the corner fan assembly (200). This second flow plate (32) can form a wall that blocks between the first intake port (112) and the first discharge port (114), and at the same time, can form a wall that blocks between the second intake port (214) of the corner fan assembly (200) and the first intake port (112) of the rear fan assembly (100).
[0275] In the corner fan assembly (200), the second intake port (212) is arranged toward the intake port (1), i.e., downward. And the second intake port (214) is arranged toward the direction toward the rear fan assembly (100), i.e., toward the side, more specifically, toward the right side, so as to be connected to the exhaust path (A).
[0276] The second flow plate (32) can be arranged on the right side of the second intake port (214) to define the lower boundary surface of the exhaust passage (A). This second flow plate (32) can define the lower boundary surface of the exhaust passage (A) between the rear fan assembly (100) and the corner fan assembly (200). At this time, the lower boundary surface of the exhaust passage (A) defined by the second flow plate (32) can form a slope whose height changes along the lateral direction.
[0277] According to the present embodiment, the second suction port (214) may be arranged to face the first suction port (112) which is arranged to face the corner fan assembly (200). In addition, the first discharge port (114) may be arranged above the first suction port (112) and above the second suction port (214).
[0278] As an example, the second flow plate (32) may form an inclined surface extending laterally from the lower side of the second suction port (214) toward the upper side of the first suction port (112). For example, the second flow plate (32) may extend laterally upwardly from a lateral end adjacent to the corner fan assembly (200) toward the rear fan assembly (100).
[0279] One lateral end of the second euro plate (32) may be placed below the second suction port (214). For example, the left end of the second euro plate (32) may be placed at a lower position than the second suction port (214).
[0280] Additionally, the lateral end of the second euro plate (32) may be placed above the first suction port (112). For example, the right end of the second euro plate (32) may be placed at a higher position than the first suction port (112).
[0281] The second flow plate (32) can form an inclined wall that blocks the space between the first suction port (112) and the first discharge port (114), and between the first suction port (112) and the second suction port (214). That is, the second flow plate (32) can form an inclined wall between the rear fan assembly (100) and the corner fan assembly (200), and this wall can block not only the space between the first suction port (112) and the first discharge port (114), but also the space between the first suction port (112) and the second suction port (214).
[0282] Accordingly, between the rear fan assembly (100) and the corner fan assembly (200), the air discharged from the first discharge port (114) does not flow into the first suction port (112), and the air discharged through the second suction port (214) does not flow into the first suction port (112).
[0283] That is, the second euro plate (32) can form a wall between the rear fan assembly (100) and the corner fan assembly (200) that blocks the air flow from the first discharge port (114) and the second suction port (214) to the first suction port (112).
[0284] According to the present embodiment, an exhaust path (A) may be formed on the left side of the first flow plate (31) and the upper side of the second flow plate (32). The intake port (1) may be arranged on the lower side of this exhaust path (A). In addition, with respect to the vertical direction, the first intake port (112) and the second intake port (212) may be arranged between the intake port (1) and the exhaust path (A), and the first discharge port (114) and the second intake port (214) may be arranged between the exhaust path (A) and the upper space (10i).
[0285] The first discharge port (114) and the second suction port (214) can be connected to the exhaust passage (A). The first discharge port (114) can be arranged upward and connected to the exhaust passage (A). And the second suction port (214) can be arranged sideways and connected to the exhaust passage (A).
[0286] In addition, the second euro plate (32) may form a path that guides the air intake into the first intake port (112).
[0287] As an example, the second flow plate (32) is arranged on the upper side of the intake port (1), and may be arranged on the left and upper side of the first intake port (112). This second flow plate (32) may form the left and upper boundary surfaces of the flow path connecting the intake port (1) and the first intake port (112). By the second flow plate (32) provided in this manner, air can be effectively induced to flow into the first intake port (112) from the left side of the rear fan assembly (100).
[0288] Meanwhile, the euro forming member (30) may further include a fastening plate (33). The fastening plate (33) may be installed in the rear fan assembly (100).
[0289] As an example, the fastening plate (33) can be coupled to the upper surface of the rear fan assembly (100) by opening the first discharge port (114) upward. This fastening plate (33) is arranged above the first suction port (112) and can be arranged above the second suction port (212) and the second suction port (214).
[0290] According to the present embodiment, the first euro plate (31) may be provided in a form extending upward from the fastening plate (33). In addition, the second euro plate (32) may be provided in a form extending downward from the fastening plate (33). That is, the upper end of the second euro plate (32) may be connected to the fastening plate (33).
[0291] In this way, the first euro plate (31) and the second euro plate (32) connected to the fastening plate (33) can be connected to the rear fan assembly (100) via the fastening plate (33).
[0292] In addition, the fastening plate (33) can be placed between the first euro plate (31) and the second euro plate (32) to connect the first euro plate (31) and the second euro plate (32). As an example, the euro forming member (30) can be provided in a form in which the first euro plate (31), the second euro plate (32), and the fastening plate (33) are formed integrally.
[0293] In the euro-forming member (30) provided in this form, the first euro plate (31) and the second euro plate (32) do not need to be separately connected to the rear fan assembly (100), and the installation of the first euro plate (31) and the second euro plate (32) can be easily and quickly accomplished by the fastening plate (33) connected to the rear fan assembly (100).
[0294] A discharge hole (omitted) may be formed in the fastening plate (33). The first discharge port (114) may be exposed to the upper side of the fastening plate (33), i.e., the inside of the exhaust passage (A), through this discharge hole.
[0295] In addition, the cooking appliance of the present embodiment may further include a support member (40). The support member (40) is provided to support the corner pan assembly (200). At least a portion of the support member (40) may be placed in the corner space portion (10g, 10h).
[0296] As an example, the support member (40) may include a lateral support member (41). The lateral support member (41) may be arranged on a lateral side of the corner fan assembly (200). The lateral support member (41) may form a side surface of the support member (40), more specifically, a right side surface of the support member (40).
[0297] The lateral support member (41) may form a vertical wall that covers the corner fan assembly (200) from the side. For example, the lateral support member (41) may form a vertical plane that is perpendicular to the lateral axis. This lateral support member (41) may form a wall that blocks the space between the corner fan assembly (200) and the rear fan assembly (100) in the rear space (10f).
[0298] The lateral support member (41) can be placed between the corner fan assembly (200) and the second flow plate (32). This lateral support member (41) can define the left boundary surface of the exhaust flow path (A).
[0299] A discharge hole (omitted) may be formed in the lateral support member (41). The second suction port (214) may be exposed to the right side of the lateral support member (41), i.e., the inside of the exhaust passage (A), through this discharge hole.
[0300] In addition, the cooking appliance of the present embodiment may further include a connecting passage forming member (37, 38). The connecting passage forming member (37, 38) may be arranged on the upper side of the corner pan assembly (200). The connecting passage forming member (37, 38) may partition the rear space (10f) such that a portion of the rear space (10f) around the support member (40) is separated into a connecting passage part (39).
[0301] As an example, the connecting passage forming member (37, 38) may include a first compartment (37) and a second compartment (38).
[0302] The first compartment (37) may form a vertical wall that is spaced apart from the lateral side of the support member (40) by a predetermined interval. As an example, the first compartment (37) may form a vertical wall that is spaced apart from the lateral side of the lateral support member (41) by a predetermined interval. In the lateral direction, the first compartment (37) may be positioned between the corner fan assembly (200) and the rear fan assembly (100).
[0303] The second compartment (38) may form a wall connecting the lateral support (41) and the first compartment (37). As an example, the first compartment (37) may be positioned at a predetermined distance to the right from the lateral support (41). The second compartment (38) may form a wall connecting the lower end of the first compartment (37) and the lateral support (41).
[0304] As an example, the second compartment (38) may be arranged on the upper side of the second flow plate (32). The left end of the second compartment (38) may be coupled to the lateral support (41). In addition, the left end of the second compartment (38) may be arranged to be spaced apart from the left end of the second flow plate (32) in the vertical direction with the second suction port (214) interposed therebetween.
[0305] As an example, the second compartment (38) may form an inclined surface parallel to the second flow plate (32). This second compartment (38), together with the lateral support portion (41), defines the left boundary surface of the exhaust passage (A), and may guide the flow of air discharged from the second intake port (214) to the exhaust passage (A) toward the lateral center of the exhaust passage (A).
[0306] The first compartment (37) can extend upward from the second compartment (38) and, together with the lateral support (41) and the second compartment (38), can define the left boundary surface of the exhaust passage (A). This first compartment (37) can guide the flow of air flowing in the exhaust passage (A) toward the upper space (10i).
[0307] When the operation of the blower (100, 200) begins, as illustrated in FIGS. 8 to 10 and 13, an intake airflow may be formed to suck air from outside the cooking appliance into the cooking appliance. The intake airflow formed in this manner acts on the outside air to be sucked in through the intake port (1) arranged at the bottom of the cooking appliance. The outside air around the intake port (1), i.e., the cooking gas, may be sucked into the main body (10) by passing through the intake port (1) by the intake airflow acting in this manner.
[0308] And the cooking gas sucked into the main body (10) in this way can be introduced into the rear space (10f) among the spaces inside the main body (10). The cooking gas sucked into the rear space (10f) in this way can be sucked into the rear fan assembly (100) and the corner fan assembly (200) through the first suction port (112) arranged on each side of the rear fan assembly (100) and the suction port arranged on the lower side of the corner fan assembly (200).
[0309] At this time, air intake into the rear fan assembly (100) can be guided by at least a portion of the directional member (30). Specifically, air intake into the first intake port (112) arranged on the left side of the rear fan assembly (100) can be guided by the second directional plate (32).
[0310] The air sucked into the rear fan assembly (100) and the corner fan assembly (200) can be discharged through the first discharge port (114) and the second suction port (214), respectively. The flow of the air discharged in this way can be guided by the exhaust path (A).
[0311] Air discharged from the second discharge port (214) of the corner fan assembly (200) can flow toward the upper space (10i) through the rear space (10f) via the exhaust passage (A). Around the second discharge port (214), the exhaust passage (A) can form an inclined passage that is upwardly slanted from the second discharge port (214).
[0312] The upward-flowing passage formed in this manner lowers the resistance to air flow in the exhaust passage (A) and minimizes flow loss within the cooking appliance. This upward-flowing passage can be formed by the second passage plate (32) defining the lower boundary surface of the exhaust passage (A) on the right side of the second suction port (214) and the connecting passage forming member (37, 38) defining the left boundary surface of the passage.
[0313] In addition, air discharged from the first discharge port (114) of the rear fan assembly (100) can flow toward the upper space (10i) through the rear space (10f) via the exhaust path (A). At this time, the exhaust path (A) can guide the air flow so that the air discharged through the first discharge port (114) can flow toward the upper space (10i) without spreading to the surroundings.
[0314] [Other examples of euro formation absence]
[0315] Referring to FIGS. 11 and 12, the euro-forming member (35) may further include an extension plate (34). The extension plate (34) may form a wall that blocks the first suction port (112) and the first discharge port (114).
[0316] The extension plate (34), like the second flow plate (32a), may be arranged on the left side of the rear fan assembly (100). The extension plate (34) may be arranged on the upper side of the rear fan assembly (100), and the second flow plate (32a) may extend downward from the extension plate (34). As an example, the extension plate (34) may be arranged on the upper side of the second flow plate (32a), and may be provided in a form that extends upward from the second flow plate (32a).
[0317] In the lateral direction, the rear fan assembly (100) may be arranged between the extension plate (34) and the first flow plate (31). In addition, in the lateral direction, the extension plate (34) may be arranged between the rear fan assembly (100) and the corner fan assembly (200). In addition, in the lateral direction, the extension plate (34) may be arranged between the lateral support member (41) and the fastening plate (33), and between the connecting flow path forming member (35) and the fastening plate (33).
[0318] The extension plate (34) arranged in this manner can be arranged between the lateral support member (41) and the first flow plate (31) inside the exhaust flow path (A), and between the connecting flow path forming member (35) and the first flow plate (31). That is, the extension plate (34) can form a vertical wall between the left boundary surface and the right boundary surface of the exhaust flow path (A).
[0319] This extension plate (34) can divide the exhaust path (A) into a first exhaust path (A1) on the right and a second exhaust path (A2) on the left. This extension plate (34) can define the left boundary surface of the first exhaust path (A1) and can define the right boundary surface of the second exhaust path (A2).
[0320] The first exhaust path (A1) can be formed as a passage connecting the first outlet (114) and the upper space (10i) in the rear space (10f). The second exhaust path (A2) can be formed as a passage connecting the second intake port (214) and the upper space (10i) in the rear space, but can be formed as a passage separate from the first exhaust path (A1).
[0321] In addition, the flow path forming member (35) can be separated into a first flow path forming member (35a) and a second flow path forming member (35b). As an example, the first flow path forming member (35a) can be provided in a form in which the first flow path plate (31) and the fastening plate (33) are connected, and the second flow path forming member (35b) can be provided in a form in which the second flow path forming member (35b) and the extension plate (34) are connected.
[0322] The first flow path forming member (35a) can be installed inside the cooking appliance through a connection between the fan housing (100) of the rear fan assembly (100) and the fastening plate (33). And the second flow path forming member (35b) can be installed inside the cooking appliance through a connection between the second flow path plate (32a) and the lateral support member (41).
[0323] By means of the above-described euro-forming member (35), the exhaust path (A) can be divided into a first exhaust path (A1) and a second exhaust path (A2), and the air discharged to the rear space (10f) by the rear fan assembly (100) and the air discharged to the rear space (10f) by the corner fan assembly (200) can flow toward the upper space (10i) through separate paths.
[0324] The euro-forming member (35) can prevent the air discharged from the corner fan assembly (200) and the air discharged from the rear fan assembly (100) from mixing inside the exhaust path (A) by forming the exhaust path (A) partitioned in this way.
[0325] [Air intake and exhaust structure of the cooking appliance]
[0326] Fig. 14 is a rear perspective view showing a first state of a cooking appliance according to a first embodiment of the present invention, and Fig. 15 is a drawing showing an air flow state in the cooking appliance illustrated in Fig. 14. In addition, Fig. 16 is a rear perspective view showing a second state of a cooking appliance according to the first embodiment of the present invention, and Fig. 17 is a drawing showing an air flow state in the cooking appliance illustrated in Fig. 16. In addition, Fig. 18 is a rear perspective view showing a third state of a cooking appliance according to the first embodiment of the present invention, and Fig. 19 is a drawing showing an air flow state in the cooking appliance illustrated in Fig. 18.
[0327] Hereinafter, the air intake and discharge structure of the cooking appliance according to the present embodiment will be described with reference to FIGS. 13 to 19.
[0328] Referring to FIGS. 13 to 15, an intake port (1) may be provided at the bottom of the cooking appliance, and an exhaust port may be provided at the top of the cooking appliance. The first exhaust port (2) may be arranged on the upper surface of the cabinet (13), but may be arranged to be biased toward the rear of the cooking appliance, and the second exhaust port (3) may be arranged to be biased toward the front of the cooking appliance. In addition, the third exhaust port (4) may be arranged at the rear of the cooking appliance, but may be arranged on the rear plate (15).
[0329] The blower (100, 200) includes a rear fan assembly (100) and a corner fan assembly (200), and the rear fan assembly (100) can be placed in the rear space (10f). And the corner fan assembly (200) can be placed in the rear space (10f) or the corner space (10g, 10h).
[0330] When the rear fan assembly (100) and the corner fan assembly (200) begin to operate, an intake airflow can be formed to draw air from outside the cooking appliance into the cooking appliance. The intake airflow formed in this manner acts on the outside air through the intake port (1) arranged at the bottom of the cooking appliance. The outside air around the intake port (1), i.e., the cooking gas, can be drawn into the main body (10) by passing through the intake port (1) by the intake airflow acting in this manner.
[0331] And, the cooking gas sucked into the main body (10) in this way can flow into the rear space (10f) through the lower space. For example, the cooking gas flowing into the lower space can flow into the rear space (10f) and the corner space (10g, 10h).
[0332] The cooking gas introduced into the rear space (10f) can be sucked into the rear fan assembly (100) through the first suction ports (112) arranged on each side of the rear fan assembly (100). The cooking gas sucked into the rear fan assembly (100) in this way can be discharged upward through the first discharge port (114) arranged on the upper side of the rear fan assembly (100).
[0333] The cooking gas introduced into the corner space (10g, 10h) can be sucked into the interior of the corner fan assembly (200) through the second suction port (212) arranged at the lower side of the corner fan assembly (200). The cooking gas sucked into the corner fan assembly (200) in this way can be discharged to the side of the corner fan assembly (200) through the second suction port (214) arranged at the side of the corner fan assembly (200).
[0334] The rear space (10f) can connect between the intake port (1) arranged on the lower side of the lower space and the upper space (10i). In addition, an exhaust path (A) can be formed in this rear space (10f). The flow of cooking gas discharged from the rear fan assembly (100) and the corner fan assembly (200) can be guided toward the upper space (10i) by the exhaust path (A).
[0335] When only the first exhaust port (2) among the exhaust ports (2, 3, 4) is open and the second exhaust port (3) and the third exhaust port (4) are closed (hereinafter referred to as “first state of the cooking appliance”), the cooking gas flowing upward through the exhaust path (A) can be discharged to the outside through the first exhaust port (2).
[0336] As an example, the first exhaust port (2) may be connected to a duct (not shown) connected to the outdoors. For example, a duct may be installed on the upper surface of the main body (10), and the interior space of this duct may be connected to the first exhaust port (2).
[0337] The first exhaust port (2) connected to the duct in this way can form a passage connecting the upper space (10i) to the outside of the cooking appliance. This first exhaust port (2) can be arranged on the upper side of the upper space (10i), but can be arranged in a position that overlaps the rear space (10f) in the vertical direction.
[0338] That is, the rear fan assembly (100), the rear space (10f), and the first exhaust port (2) can be arranged in positions that overlap each other in the vertical direction. Preferably, the rear fan assembly (100), the rear space (10f), and the first exhaust port (2) can be arranged in a row in the vertical direction.
[0339] In addition, the exhaust passage (A) may be arranged between the blower (100, 200) and the first exhaust port (2) in the rear space (10f). The inlet of the exhaust passage (A) may be opened toward the blower (100, 200), and the outlet of the exhaust passage (A) may be opened toward the upper space (10i). In addition, the first exhaust port (2) may be arranged in an area that overlaps the outlet of the exhaust passage (A) in the vertical direction.
[0340] Accordingly, the air flow caused by the operation of the rear fan assembly (100) can be made in the same straight direction as the arrangement direction of the rear fan assembly (100), the rear space (10f), and the first exhaust port (2).
[0341] As air flows in a straight line like this, the resistance to air flow is reduced, allowing air to flow more smoothly. Accordingly, the air intake and exhaust performance of the rear fan assembly (100) can be improved, and thus the cooking gas removal performance of the cooking appliance can be improved accordingly.
[0342] Meanwhile, the cooking appliance of the present embodiment can also discharge cooking gas sucked into the cooking appliance into the room, as illustrated in FIGS. 16 and 17. At this time, the cooking appliance may be in a state where only the second exhaust port (3) among the exhaust ports (2, 3, and 4) is open and the first exhaust port (2) and the third exhaust port (4) are closed (hereinafter referred to as the "second state of the cooking appliance").
[0343] In the second state of the cooking appliance, a passage for discharging cooking gas sucked into the cooking appliance into the room can be provided by a second exhaust port (3). That is, cooking gas drawn into the rear space (10f) through the intake port (1) can be discharged into the room through the second exhaust port (3) after passing through the upper space (10i).
[0344] As an example, a filter (not shown) may be placed on the bottom of the cooking appliance. The filter is placed in the intake port (1), and cooking gas may pass through the intake port (1) and be filtered by the filter.
[0345] As another example, a filter may be placed in the upper space (10i). For example, the filter may be placed inside the main body (10), but may be placed in the second exhaust port (3). In this case, cooking gas flowing from the rear space (10f) to the upper space (10i) may pass through the filter and be discharged indoors through the second exhaust port (3) in a filtered state.
[0346] The cooking appliance of this embodiment can discharge cooking gas sucked into the interior of the cooking appliance to the outside through the third exhaust port (4), as shown in FIGS. 18 and 19.
[0347] At this time, the cooking appliance may be in a state where only the third exhaust port (4) among the exhaust ports (2, 3, 4) is open and the first exhaust port (2) and the second exhaust port (3) are closed (hereinafter referred to as “the third state of the cooking appliance”).
[0348] As an example, the third exhaust port (4) may be connected to a pipe or duct (not shown) embedded in a wall where the cooking appliance is installed. For example, the pipe or duct may be connected to the rear plate (15), and the internal space of the pipe or duct may be connected to the third exhaust port (4).
[0349] In this way, the third exhaust port (4) connected to the pipe or duct is positioned closest to the blower (100, 200). Accordingly, in the third state of the cooking appliance, the distance between the blower (100, 200) and the exhaust ports (2, 3, 4) can be made as short as possible. In addition, since the third exhaust port (4) is positioned on the back of the cooking appliance facing the wall, the third exhaust port (4) and the pipe or duct are not exposed to the outside.
[0350] That is, in the third state of the cooking appliance, the cooking appliance can reduce the air flow distance inside the cooking appliance, thereby reducing the flow resistance inside the cooking appliance, and the appearance of the cooking appliance can be kept simple and neat.
[0351] As described above, the cooking appliance of this embodiment, which adopts a structure in which the blower (100, 200) is arranged in the rear space (10f), allows the air involved in sucking in cooking gas and discharging it through the first exhaust port (2) to flow in a straight direction, thereby minimizing flow loss within the cooking appliance, and thereby providing further improved cooking gas removal performance.
[0352] In addition, the cooking appliance of the present embodiment can provide the effect of maintaining a compact size and smoothly filtering and discharging cooking gas indoors by effectively securing the installation space of the filter in the upper space (10i).
[0353] Meanwhile, the space inside the main body (10) can be divided into a side space (10e), a rear space (10f), and an upper space (10i) as described above, and the blower (100, 200) of the present embodiment is placed in the rear space (10f), not in the side space (10e) or the upper space (10i).
[0354] Typically, the lateral length of the side space (10e) where the main chamber is not arranged is set shorter than the front-rear length of the rear space (10f). In other words, the side space (10e) can only provide a narrower space compared to the rear space (10f).
[0355] In the rear space (10f), various devices may be placed depending on the type of cooking appliance. For example, in the case of a cooking appliance providing a convection function, a convection module may be placed in the rear space (10f).
[0356] In contrast, it is very rare for any other device to be placed in the side space (10e) that does not form the main chamber (10b, 10c, 10d). Therefore, the lateral width of the side space (10e) does not need to be unnecessarily increased. If the lateral length of the side space (10e) is unnecessarily increased, only the overall size of the cooking appliance will increase, regardless of whether the cooking appliance's performance is improved.
[0357] Considering these points, it is desirable that the side space (10e) be formed to provide a narrower space compared to the rear space (10f).
[0358] To reduce costs, cooking appliances with the same cooking chamber volume typically share a body (10) of the same specifications. For example, a cooking appliance that provides both high-frequency and convection functions can be manufactured using a body (10) of the same specifications as a cooking appliance that provides only high-frequency functions.
[0359] Accordingly, the main body (10) of the present embodiment may include a rear space (10f) that provides a space suitable for arranging a convection module, and the side space (10e) may be formed in a form that provides only a narrow space compared to the rear space (10f).
[0360] Taking these points into consideration, the blower (100, 200) of the present embodiment may be placed in the rear space (10f) which provides more sufficient space than the side space (10e). By placing the blower (100, 200) in the rear space (10f) in this way, not only can the flow loss within the cooking appliance be reduced as described above, but also a larger and higher-performance fan assembly can be applied to the blower (100, 200).
[0361] That is, the cooking appliance of the present embodiment, which includes a blower (100, 200) arranged in the rear space (10f), can provide further improved cooking gas removal performance while suppressing an increase in the size of the cooking appliance by using a body (10) of a standard commonly used size.
[0362] [Lack of support]
[0363] Fig. 20 is an enlarged view of the corner fan assembly and its surroundings, and Fig. 21 is a rear perspective view showing the support member shown in Fig. 20 in an exploded manner. In addition, Fig. 22 is a rear perspective view showing a portion of a cooking appliance to which another example of the support member is applied, and Fig. 23 is a rear perspective view showing the support member shown in Fig. 22 in an exploded manner.
[0364] Referring to FIG. 6, FIG. 20, and FIG. 21, the cooking appliance of the present embodiment may include a support member (40). The support member (40) may support the corner fan assembly (200) so that the flow of air discharged from the second suction port (214) may be guided toward the rear space (10f).
[0365] At least a portion of the support member (40) may form a wall that blocks the space between the side space (10e) and the rear space (10f). That is, at least a portion of the support member (40) may form a wall that blocks the space between the corner fan assembly (200) and the rear fan assembly (100) in the rear space (10f).
[0366] The support member (40) can form a wall that divides the rear space (10f) into two regions along the lateral direction. As an example, the support member (40) can divide a portion of the rear space (10f) adjacent to the side space (10e) into a corner space (10g, 10h). In addition, at least a portion of the support member (40) can form a wall that covers the corner fan assembly (200) from the side. This wall can be formed by the lateral support member (41).
[0367] The second suction port (214) may be arranged on the side of the corner fan assembly (200) toward the support member (40), more specifically, the lateral support member (41). A discharge hole (41a) may be formed in the lateral support member (41). The discharge hole (41a) may be formed to expose the second suction port (214) laterally and may be formed to laterally penetrate the lateral support member (41).
[0368] The lateral support member (41) can be coupled with the corner fan assembly (200). That is, the corner fan assembly (200) can be coupled laterally with the lateral support member (41) and supported by the support member (40).
[0369] The support member (40) may include a front support portion (42). The front support portion (42) forms the front surface of the support member (40) and may be arranged on the front side of the corner fan assembly (200).
[0370] The front support member (42) can form a vertical wall that covers the corner fan assembly (200) from the front. For example, the front support member (42) can form a vertical plane that is perpendicular to the front-back axis. This front support member (42) can be arranged between a cooling fan (6; see FIG. 25) to be described later and the corner fan assembly (200), and can form a wall that blocks the cooling fan (6) and the corner fan assembly (200) in the electrical compartment (10b, 10c, 10d).
[0371] The front support member (42) can be connected to the lateral support member (41) on the lateral side of the lateral support member (41). As an example, the right end of the front support member (42) can be connected to the front end of the lateral support member (41). For example, the front support member (42) and the lateral support member (41) can be connected in an "L" shape.
[0372] The front support member (42) connected to the lateral support member (41) in this way can support the lateral support member (41) from the front side. This front support member (42) can simultaneously serve as a shielding wall that blocks the cooling fan (6) and the corner fan assembly (200), and as a support wall that supports the lateral support member (41) that supports the corner fan assembly (200).
[0373] In addition, the front support portion (42) may include a support surface that forms a vertical plane for coupling with electrical components. For example, electrical components such as a magnetron, a high-voltage transformer, a high-voltage condenser, a noise filter, etc. may be placed in the electrical compartment (10b, 10c, 10d), and at least one of the electrical components may be installed on the support surface of the front support portion (42). In the present embodiment, it is exemplified that a high-voltage condenser is installed on the support surface of the front support portion (42).
[0374] In addition, the support member (40) may further include an upper support portion (43). The upper support portion (43) forms the upper surface of the support member (40) and may be arranged on the upper side of the corner fan assembly (200). As an example, the upper support portion (43) may be arranged in the corner space portion (10g, 10h).
[0375] The upper support member (43) is positioned above the lateral support member (41) and the front support member (42), and can be vertically connected to at least one of the lateral support member (41) and the front support member (42). In the present embodiment, the upper support member (43) is exemplified as being connected to both the lateral support member (41) and the front support member (42).
[0376] As an example, the front end of the upper support member (43) can be connected to the upper end of the front support member (42), and the right end of the upper support member (43) can be connected to the upper end of the lateral support member (41). By the upper support member (43), the three sides of the support member (40) are connected as one, and thus the structural stability of the support member (40) can be improved.
[0377] Additionally, the upper support member (43) may include a support surface that forms a horizontal plane for coupling with the electric component. In the present embodiment, a noise filter connected to the corner fan assembly is exemplified as being installed on the support surface of the upper support member (43).
[0378] The support member (40) including the lateral support member (41), the front support member (42) and the upper support member (43) as described above not only provides a shielding wall between the cooling fan (6) and the corner fan assembly (200), but can also provide a support wall for stable installation of the electric component and the corner fan assembly (200).
[0379] As an example, the support member (40) may be provided in a form in which the lateral support member (41), the front support member (42), and the upper support member (43) are formed integrally. Such a support member (40) can facilitate assembly and installation of the support member (40), management of parts, and can have excellent structural stability.
[0380] As another example, as shown in FIGS. 22 and 23, the lateral support portion, the front support portion, and the upper support portion may be provided as separate objects.
[0381] According to this, the support member (45) may include a first support plate (45a), a second support plate (45b), and a third support plate (45c), and the first support plate (45a), the second support plate (45b), and the third support plate (45c) may each be provided as separate objects.
[0382] For example, the first support plate (45a) can form a lateral support portion, the second support plate (45b) can form a front support portion, and the third support plate (45c) can form an upper support portion. In this way, the first support plate (45a), the second support plate (45b), and the third support plate (45c), which are provided as separate parts, can be combined with each other to form a support member (40).
[0383] As an example, the first support plate (45a) may be provided in a form that includes both a lateral support portion and a connecting passage forming member (37, 38). That is, in the first support plate (45a), the lateral support portion and the connecting passage forming member (37, 38) may be formed integrally.
[0384] Additionally, the through hole (41b) may be provided in the first support plate (45a) or may be provided in the third support plate (45c).
[0385] [Structure of the battle room]
[0386] Fig. 24 is a drawing showing a state in which outside air is introduced into a battle room through a cold air inlet, Figs. 25 to 27 are drawings showing a state in which air flows into a battle room, and Fig. 28 is a drawing showing a state in which air flows into a lower corner space through a connecting passage from an upper corner space.
[0387] Referring to FIGS. 24 and 25, a cold air inlet (5) may be provided in the main body (10). The cold air inlet (5) may be arranged on the upper surface of the main body (10) together with the first exhaust port (2) and the second exhaust port (3).
[0388] As an example, a cold air inlet (5) may be formed to penetrate vertically through the upper surface of the cabinet (13). This cold air inlet (5) may be arranged on the upper side of the electrical compartment (10b, 10c, 10d) and may open the electrical compartment (10b, 10c, 10d) to the outside of the main body (10). Outside air may be introduced into the electrical compartment (10b, 10c, 10d) through the cold air inlet (5).
[0389] Referring to FIGS. 25 and 26, the cooking appliance of the present embodiment may include a partition plate (50). The partition plate (50) may be placed in the side space (10e), more specifically, in the main chamber (10b, 10c, 10d).
[0390] As an example, the partition plate (50) can form a horizontal plane perpendicular to the vertical axis. This partition plate (50) partitions the side space (10e) vertically, and can partition it into a lower electrical chamber (10b) and an upper electrical chamber (10c). For example, the electrical chambers (10b, 10c, 10d) can be partitioned into a lower electrical chamber (10b) below the partition plate (50) and an upper electrical chamber (10c) above the partition plate (50).
[0391] For example, within the electrical compartments (10b, 10c, 10d), the lower electrical compartment (10b) may occupy a much wider space than the upper electrical compartment (10c). For example, the vertical length of the lower electrical compartment (10b) may be set to be much longer than the vertical length of the upper electrical compartment (10c). Most electrical components, including magnetrons, high-voltage transformers, and high-voltage condensers, may be primarily placed in the lower electrical compartment (10b).
[0392] The cooking appliance of the present embodiment may further include a cooling fan (6). The cooling fan (6) is provided to allow external air to be introduced into the electrical compartment (10b, 10c, 10d) through the cold air inlet (5). As an example, the cooling fan (6) may be placed in the lower electrical compartment (10b) together with most of the electrical components.
[0393] The blower (100, 200) is placed on the rear side of the cooling fan (6), and a support member (40), more specifically a front support member (42), can be placed between the cooling fan (6) and the corner fan assembly (200).
[0394] The cooling fan (6) can generate airflow to draw outside air into the main body (10) through the cold air inlet (5).
[0395] When the cooling fan (6) is in operation, outside air can be introduced into the upper electrical compartment (10c) through the cold air inlet (5). The air introduced into the upper electrical compartment (10c) can pass through the partition plate (50) and be introduced into the lower electrical compartment (10b).
[0396] For this purpose, a passage hole (52, 54) may be provided in the partition plate (50). The passage hole (52, 54) may form a passage connecting the upper electrical chamber (10c) and the lower electrical chamber (10b) in the partition plate (50). As an example, the passage hole (52, 54) may be formed to penetrate the partition plate (50) in the vertical direction.
[0397] Air introduced into the upper electrical compartment (10c) through the cold air inlet (5) can be introduced into the lower electrical compartment (10b) through the passage holes (52, 54). In this way, air introduced into the electrical compartments (10b, 10c, 10d) can cool electrical components placed in the lower electrical compartment (10b).
[0398] Additionally, some of the air introduced into the lower chamber (10b) may be introduced into the cooking chamber (10a; see Fig. 2). To this end, a side hole (11a) may be provided in the cavity (11). The side hole (11a) may form a passage connecting at least one of the lower chamber (10b) and the upper chamber (10c) to the cooking chamber (10a).
[0399] In this embodiment, the side hole (11a) is exemplified as being arranged in the lower electrical compartment (10b). As an example, the side hole (11a) is formed to penetrate laterally into the cavity (11), and a passage connecting the lower electrical compartment (10b) and the cooking chamber (10a) can be formed in the cavity (11). This side hole (11a) can be arranged on the front side of the support member (40).
[0400] The cooking appliance of the present embodiment may further include a blocking plate (55). The blocking plate (55) may partition the upper chamber (10c) front and rear so that the front area of the upper chamber (10c) is separated into an intake chamber (10d).
[0401] As an example, the blocking plate (55) may form a vertical wall surface perpendicular to the forward-backward axis. This blocking plate (55) may be placed on the upper side of the partition plate (50) and may be joined to the upper surface of the partition plate (50).
[0402] By means of the blocking plate (55) provided in this manner, the area between the front plate (12) and the blocking plate (55) in the upper electrical room (10c) can be partitioned into an intake room (10d).
[0403] A plurality of passage holes (52, 54) may be provided in the partition plate (50). For example, a first passage hole (52) and a second passage hole (54) may be provided in the partition plate (50). The first passage hole (52) and the second passage hole (54) may be arranged to be spaced apart from each other in the front-rear direction with a blocking plate (55) interposed therebetween.
[0404] The first passage hole (52) can form a passage connecting the intake chamber (10d) and the lower electrical chamber (10b). This first passage hole (52) can be arranged on the front side of the blocking plate (55) and the cooling fan (6), and can be formed to penetrate the partition plate (50) in the vertical direction.
[0405] The second passage hole (54) can form a passage connecting the upper electrical chamber (10c) and the lower electrical chamber (10b) at the rear side of the intake chamber (10d). This first passage hole (52) can be arranged at the rear side of the blocking plate (55) and the cooling fan (6), and can be formed to penetrate the partition plate (50) in the vertical direction.
[0406] According to the present embodiment, an upper support portion (43) may be arranged on the rear side of the partition plate (50). The upper support portion (43) may be arranged in the corner space portion (10g, 10h) and may partition the corner space portion (10g, 10h) upwardly and downwardly. By the upper support portion (43), the corner space portion (10g, 10h) may be partitioned into an upper corner space portion (10g) and a lower corner space portion (10h).
[0407] The lower corner space (10h) may be arranged below the upper support portion (43). The upper boundary surface of the lower corner space (10h) may be defined by the upper support portion (43), the front boundary surface of the lower corner space (10h) may be defined by the front support portion (42), and the right boundary surface of the lower corner space (10h) may be defined by the lateral support portion (41). The corner fan assembly (200) may be arranged in the lower corner space (10h).
[0408] The upper corner space (10g) can be arranged on the upper side of the upper support member (43). The upper corner space (10g) is arranged on the rear side of the rear side of the upper electrical room (10c), and can be connected to the upper electrical room (10c) from the rear side of the upper electrical room (10c).
[0409] At least one of the electrical components arranged in the upper electrical compartment (10c) may be arranged in the upper support member (43). As an example, a noise filter connected to the corner fan assembly (200) may be arranged in the upper corner space (10g), and this noise filter may be installed on the upper surface of the upper support member (43).
[0410] The air introduced into the lower electrical compartment (10b) by the cooling fan (6) can flow into the upper electrical compartment (10c) through the second passage hole (54). In this way, the air introduced into the upper electrical compartment (10c) can cool the electrical components installed in the upper support member (43) by passing through the upper corner space (10g).
[0411] Meanwhile, the upper electrical compartment (10c) and the lower electrical compartment (10b) may be connected by a connecting passage (39). The connecting passage (39) may form a passage for air introduced into the lower electrical compartment (10b) by the cooling fan (6) to flow through the upper electrical compartment (10c) toward the blower (100, 200). For example, the connecting passage (39) may form a passage for air introduced into the electrical compartments (10b, 10c, 10d) to flow through the upper corner space (10g) to the corner fan assembly (200).
[0412] In addition, a through hole (41b) may be provided in the lateral support member (41). The through hole (41b) is provided so that the space surrounded by the lateral support member (41) and the front support member (42), i.e., the lower corner space (10h), can be opened laterally.
[0413] The connecting passage (39) can form a passage connecting the through hole (41b) and the upper electrical room (10c), more specifically, the through hole (41b) and the upper corner space (10g). This connecting passage (39) can be connected to the upper corner space (10g) and the lower corner space (10h) from the side of the upper corner space (10g, 10h), respectively. The connecting passage (39) and the lower corner space (10h) can be connected through the through hole (41b).
[0414] As described above, the connecting passage portion (39) can be formed by the connecting passage forming member (37, 38). In the connecting passage forming member (37, 38), the first compartment portion (37) can form a vertical wall that is arranged at a predetermined interval on the side of the lateral support portion (41). In addition, the second compartment portion (38) can form a wall that is connected to the lateral support portion (41) at the lower side of the through hole (41b) and connects the lateral support portion (41) and the first compartment portion (37).
[0415] Both sides of the connecting passage (39) may be defined by the lateral support (41) and the first compartment (37). For example, the left side of the connecting passage (39) may be defined by the lateral support (41), and the right side of the connecting passage (39) may be defined by the first compartment (37). The bottom of the connecting passage (39) may be defined by the second compartment (38).
[0416] Air introduced into the upper chamber (10c) can pass through the upper corner space (10g) and enter the connecting passage (39). Air introduced into the connecting passage (39) can then be introduced into the lower corner space (10h) through the through hole (41b) and then sucked into the corner fan assembly (200).
[0417] The suction force of the corner fan assembly (200) can act on the lower corner space (10h). In this way, the suction force acting on the lower corner space (10h) can also affect the connecting passage (39) connected to the lower corner space (10h) and the upper corner space (10g). In other words, the suction force of the corner fan assembly (200) can affect the upper corner space (10g), and this can act as a force that causes the air flowing into the upper corner space (10g) to flow toward the lower corner space (10h).
[0418] Ultimately, the suction force of the corner fan assembly (200) can act as a force that guides the flow of air flowing from the lower chamber (10b) to the upper chamber (10c) to the lower corner space (10h) through the connecting passage (39).
[0419] Below, we will examine the air flow in the battle rooms (10b, 10c, 10d).
[0420] Outside air can be introduced into the interior of the main body (10) through the cold air inlet (5), as illustrated in Fig. 24. Air passing through the cold air inlet (5) in this way can be introduced into the intake chamber (10d), as illustrated in Figs. 25 to 27.
[0421] Air drawn into the intake chamber (10d) can flow into the lower electrical compartment (10b) by passing through the first passage hole (52) and the partition plate (50). In the lower electrical compartment (10b), the air can flow rearward by the cooling fan (6). In this way, the air flowing rearward in the lower electrical compartment (10b) can cool the electrical components arranged in the lower electrical compartment (10b).
[0422] Some of the air flowing in the lower chamber (10b) can flow into the chamber through the cavity (11) via the intake port (1). Other parts of the air flowing in the lower chamber (10b) can flow into the upper chamber (10c) through the partition plate (50) via the second passage hole (54).
[0423] In the upper electrical compartment (10c), air can flow toward the connecting passage (39) under the influence of the suction force of the corner fan assembly (200). For example, air introduced into the upper electrical compartment (10c) can pass through the upper corner space (10g) and cool electrical components, and then, as illustrated in Fig. 28, can be introduced into the connecting passage (39).
[0424] The air flowing through the connecting passage (39) can pass through the lateral support (41) via the through hole (41b) and then flow into the lower corner space (10h) and then be sucked into the corner fan assembly (200). That is, the air flowing into the lower corner space (10h) from the connecting passage (39) can be sucked into the corner fan assembly (200) and then discharged into the exhaust passage (A) by joining with the air flowing into the interior of the main body (10) through the intake port (1), as illustrated in FIG. 13.
[0425] As illustrated in FIGS. 24 to 28, the flow path formed in the electrical compartment (10b, 10c, 10d), the corner space portion (10g, 10h), and the connecting flow path portion (39) allows the force provided by the suction force of the corner fan assembly (200) to be added to the force provided by the cooling fan (6) in the electrical compartment (10b, 10c, 10d), thereby enabling the air to flow more smoothly within the electrical compartment (10b, 10c, 10d) and contributing to more effective cooling of electrical components placed in the electrical compartment (10b, 10c, 10d).
[0426] In addition, as described above, the flow path formed in the main body room (10b, 10c, 10d), the corner space part (10g, 10h), and the connecting flow path part (39) can contribute to increasing the air intake of the corner fan assembly (200) by allowing the air introduced into the main body room (10b, 10c, 10d) to flow toward the corner fan assembly (200), and ultimately to effectively increasing the discharge air volume of the corner fan assembly (200).
[0427] Meanwhile, referring to FIGS. 25 to 27, the cooking appliance of the present embodiment may further include a euro partition plate (16). The euro partition plate (16) is provided to partition the space above the cavity (11) and the partition plate (50). This euro partition plate (16) may partition the space above the cavity (11) and the partition plate (50) into an upper electrical chamber (10c) and an upper space portion (10i).
[0428] As an example, the euro partition plate (16) can form a vertical wall perpendicular to the lateral axis. This euro partition plate (16) can block the space between the upper electrical chamber (10c) and the upper space (10i) and separate these two spaces. For example, the euro partition plate (16) can define the right boundary surface of the upper electrical chamber (10c) and the left boundary surface of the upper space (10i).
[0429] In addition, the cooking appliance of the present embodiment may include a waveguide (17). The waveguide (17) is provided to transmit microwaves generated by a magnetron installed in a power chamber (10b, 10c, 10d) to a cooking chamber (10a).
[0430] The waveguide (17) is arranged in the upper electrical room (10c) and the upper space (10i), and can be installed on the upper surface of the partition plate (50) and the cavity (11). That is, a part of the waveguide (17) is installed on the upper surface of the partition plate (50), and the remaining part of the waveguide (17) can be installed on the upper surface of the cavity (11) by laterally penetrating the passage partition plate (16).
[0431] A space is formed inside the waveguide (17), and the inlet of the waveguide (17) connected to this space can be connected to a magnetron, and the outlet of the waveguide (17) connected to this space can be connected to a cooking chamber (10a). Microwaves introduced into the interior of the waveguide (17) through the inlet of the waveguide (17) can be introduced into the cooking chamber (10a) through the outlet of the waveguide (17).
[0432] The outlet of the waveguide (17) can be connected to the cooking chamber (10a) from the upper surface of the cavity (11). Accordingly, microwaves transmitted from the magnetron through the waveguide (17) can be introduced into the cooking chamber (10a) from the upper side of the cooking chamber (10a) through the upper surface of the cavity (11). As an example, the outlet of the waveguide (17) can be arranged on the upper side of the cavity (11), but can be arranged approximately at the lateral center of the cavity (11).
[0433] If the vertical length of the cooking appliance is shortened, the vertical length of the cooking chamber (10a) is also likely to be shortened. Even if the blower (100, 200) is arranged in the rear space (10f) instead of the upper space (10i), and the vertical length of the upper space (10i) may be reduced accordingly, the reduction in the length of the upper space (10i) is bound to be smaller than the reduction in the length of the entire cooking appliance, and therefore, it is difficult to avoid a reduction in the length of the cooking chamber (10a) due to the reduction in the length of the cooking appliance.
[0434] In this case, the shape of the cooking chamber (10a) is flatter in the horizontal direction compared to the cooking chamber of a conventional cooking appliance. In a cooking appliance having a cooking chamber (10a) of this shape, when microwaves are introduced into the cooking chamber (10a) through the side of the cavity (11), it is difficult for the microwaves to be supplied evenly throughout the entire cooking chamber (10a).
[0435] Taking these points into consideration, in the present embodiment, a waveguide (17) is installed on the upper surface of the cavity (11), and microwaves can be introduced into the cooking chamber (10a) through the upper surface of the cavity (11). That is, in the cooking appliance of the present embodiment, microwaves can be supplied through the upper side of the cooking chamber (10a), and thus, microwaves can be evenly supplied to the entire cooking chamber (10a).
[0436] [Example of absence of cover]
[0437] Referring to FIGS. 25 to 27, the cooking appliance of the present embodiment may include a covering member (60). The covering member (60) is provided to cover the passage holes (52, 54) formed in the partition plate (50), more specifically, the first passage hole (52), from the upper or lower side. This covering member (60) may be arranged to be spaced apart from the partition plate (50) or the first passage hole (52) in the vertical direction by a predetermined distance.
[0438] In this embodiment, the shielding member (60) is exemplified as being arranged on the upper side of the partition plate (50) and the first passage hole (52). This shielding member (60) may be arranged between the upper surface of the cabinet (13) and the partition plate (50). As an example, the shielding member (60) may be arranged in the upper electrical compartment (10c), more specifically, in the intake chamber (10d).
[0439] In the vertical direction, the covering member (60) may be placed between the first passage hole (52) and the cold air inlet (5). This covering member (60) may be arranged so that when viewed from the upper side of the main body (10), either the first passage hole (52) or the cold air inlet (5) is completely covered by the covering member (60).
[0440] As an example, the covering member (60) may be provided so that the first passage hole (52) is completely covered by the covering member (60). For example, the covering member (60) may form a horizontal wall that completely covers the first passage hole (52) from the upper side.
[0441] The above-mentioned shielding member (60) may be installed on the blocking plate (55). This shielding member (60) may be coupled to the front surface of the blocking plate (55) and may be installed on the blocking plate (55) in a form that protrudes forward from the blocking plate (55). At this time, the shielding member (60) may be coupled to the blocking plate (55) at a position spaced upward by a predetermined distance from the upper surface of the partition plate (50).
[0442] By means of this covering member (60), the first passage hole (52) is completely covered so that it cannot be seen from above, but air can flow smoothly through the first passage hole (52). That is, the covering member (60) covers the first passage hole (52) so that the first passage hole (52) cannot be seen from above the covering member (60), but air in the intake chamber (10d) can smoothly flow into the lower electrical compartment (10b) through the first passage hole (52) regardless of the presence or absence of the covering member (60).
[0443] The covering member (60) provided as described above can block the space between the first passage hole (52) and the cold air inlet (5). This covering member (60) can serve to cover the flames rising to the upper side of the first passage hole (52) between the first passage hole (52) and the cold air inlet (5) so that the flames generated in the lower electrical compartment (10b) are not exposed to the outside of the cooking appliance through the cold air inlet (5).
[0444] High-voltage electrical components, such as high-voltage transformers and high-voltage condensers, are mostly placed in the lower electrical compartment (10b). High-voltage electrical components placed in the lower electrical compartment (10b) in this way pose a risk of causing a fire in the lower electrical compartment (10b).
[0445] If a fire breaks out in the lower electrical compartment (10b) and the resulting flames are exposed to the outside of the cooking appliance, the risk of the fire spreading increases as the flames exposed to the outside of the cooking appliance spread to the surrounding area of the cooking appliance.
[0446] In the cooking appliance, a first passage hole (52) is arranged on the upper side of the lower chamber (10b) to form a passage necessary for air from the intake chamber (10d) to flow into the lower chamber (10b). In addition, a cold air inlet (5) is arranged on the upper side of the first passage hole (52) to form a passage necessary for outside air to flow into the intake chamber (10d).
[0447] Accordingly, the flame generated in the lower electrical chamber (10b) may rise into the intake port (1) through the first passage hole (52), and may rise to the upper side of the main body (10) through the cold air inlet (5) in the intake chamber (10d) and be exposed to the outside of the cooking appliance. To prevent this, it is necessary to block the flame inside the cooking appliance so that the flame generated in the lower electrical chamber (10b) is not exposed to the outside of the cooking appliance.
[0448] Considering these points, in the present embodiment, a covering member (60) arranged in the intake chamber (10d) is provided to block the space between the first passage hole (52) and the cold air inlet (5). This covering member (60) can prevent the flame generated in the lower electrical chamber (10b) from being exposed to the outside of the cooking appliance by blocking the flame generated in the lower electrical chamber (10b) from being emitted from the intake chamber (10d).
[0449] The cooking appliance of this embodiment, which is provided with the covering member (60) as described above, can provide the effect of significantly reducing the risk of fire spreading due to flames generated inside the cooking appliance while allowing air to flow smoothly into the lower electrical compartment (10b).
[0450] [Other examples of absence of cover]
[0451] Figure 29 is a rear perspective view illustrating a portion of a cooking appliance to which another example of a covering member is applied.
[0452] As illustrated in Fig. 29, a blocking plate (60; see Fig. 27) is not arranged in the upper electrical compartment (10c), and thus the upper electrical compartment (10c) may not be partitioned front-to-back. The shielding member (65) arranged in the upper electrical compartment (10c) may be provided in a form that is directly cut into the partition plate (50). As an example, the shielding member (65) may be formed in a hexahedral shape including a horizontal surface portion (66) and a vertical surface portion (67).
[0453] The transverse surface (66) forms the upper surface of the covering member (65) and is provided to cover the first passage hole (52) from the upper side. As an example, the transverse surface (66) can form a transverse plane perpendicular to the vertical axis.
[0454] The shielding member (65) may further include a vertical surface portion (67). The vertical surface portion (67) forms a side surface of the shielding member (65) and may be positioned between the horizontal surface portion (66) and the partition plate (50). The vertical surface portion (67) may be coupled to the upper surface of the partition plate (50) while spacing the horizontal surface portion (66) upward from the upper surface of the partition plate (50).
[0455] The shielding member (65) may include a plurality of vertical surfaces (67) that surround the first passage hole (52) from the side. A space surrounding the first passage hole (52) may be formed inside the shielding member (65) including the plurality of vertical surfaces (67).
[0456] At least one of the plurality of vertical surfaces (67) may be provided with a ventilation hole (67a). In the present embodiment, it is exemplified that a ventilation hole (67a) is provided in each vertical surface (67).
[0457] The ventilation hole (67a) may be formed to penetrate horizontally through the vertical surface portion (67). This ventilation hole (67a) may form a passage connecting the outside of the shielding member (65) and the inside space of the shielding member (65). Air introduced into the upper electrical compartment (10c) through the cold air inlet (5; see FIG. 24) may be introduced into the inside of the shielding member (65) through the ventilation hole (67a) from the outside of the shielding member (65), and then introduced into the lower electrical compartment (10b) through the first passage hole (52).
[0458] The shielding member (65) provided as described above can provide the effect of significantly reducing the risk of fire spreading due to sparks generated inside the cooking appliance, and can be effectively installed in the upper electrical room (10c) even when the blocking plate (55) is not installed.
[0459] [Structure of the upper space]
[0460] Fig. 30 is a rear perspective view showing the intake and exhaust states of a cooking appliance according to the first embodiment of the present invention, and Fig. 31 is a rear perspective view showing the air flow state inside the cooking appliance shown in Fig. 30. In addition, Fig. 32 is a plan view showing an enlarged view of the area around the common exhaust port shown in Fig. 30, and Fig. 33 is an enlarged view showing an exhaust duct and its area.
[0461] Referring to FIG. 14, FIG. 30, and FIG. 32, a circulation air outlet (11b: see FIG. 34) may be provided inside the main body (10). The circulation air outlet (11b) may form a passage connecting the cooking chamber (10a) and the upper space (10i) on the upper surface of the cavity (11). As an example, the circulation air outlet (11b) may be formed to penetrate vertically on the upper surface of the cavity (11).
[0462] According to the present embodiment, a plurality of second exhaust ports (3) may be arranged at the upper portion of the main body (10). At least one of the plurality of second exhaust ports (3) may be provided as a common exhaust port (3a). The common exhaust port (3a) is provided so as to discharge together the air that has flowed into the upper space (10i) by the blower (100, 200) and the air that has flowed into the upper space (10i) through the circulating air discharge port (11b).
[0463] As an example, the circulating air outlet (11b) may be positioned at a position shifted to the right from the lateral center of the cavity (11). For example, the circulating air outlet (11b) may be positioned at a position overlapping at least a portion of the common exhaust port (3a) in the front-rear direction.
[0464] According to the present embodiment, a plurality of second exhaust ports (3) and cold air inlets (5) can be arranged laterally. As an example, at least one of the plurality of second exhaust ports (3) arranged at a position furthest from the cold air inlet (5) can be provided as a common exhaust port (3a). For example, the cold air inlet (5) can be arranged on the left side of the second exhaust port (3), and one of the plurality of second exhaust ports (3) arranged at the farthest right side can be provided as a common exhaust port (3a).
[0465] As another example, at least one of the plurality of second exhaust ports (3) arranged laterally and located at the furthest position from the main chamber (10b, 10c, 10d) may be provided as a common exhaust port (3a).
[0466] As another example, at least one of the plurality of second exhaust ports (3) arranged laterally and located closest to the expansion plate (18) may be provided as a common exhaust port (3a). In this case, at least a portion of the common exhaust port (3a) may be arranged to overlap the expansion plate (18) in the vertical direction.
[0467] Additionally, an exhaust duct (70) may be arranged in the upper space (10i). The exhaust duct (70) is provided to guide the flow of air discharged from the cooking chamber (10a) to the circulation air outlet (11b) toward the common exhaust port (3a).
[0468] In this embodiment, the circulation air outlet (11b) may be positioned at a position tilted toward the rear from the front-back center of the cavity (11). For example, the circulation air outlet (11b) may be positioned on the upper surface of the cavity (11), but may be positioned adjacent to the rear right corner of the cavity (11).
[0469] The exhaust duct (70) is provided so as to guide the flow of air discharged through the circulating air outlet (11b) located at this location toward the common exhaust port (3a) located at a location adjacent to the front of the main body (10).
[0470] In addition, the cooking appliance of the present embodiment may include an expansion plate (18). The expansion plate (18) may partition the side space (10e) such that a portion of the side space (10e) is separated into an expansion upper space (10j). By the expansion plate (18), an upper portion of the side space (10e) of the expansion plate (18) may be partitioned into an expansion upper space (10j).
[0471] [Expansion Plate]
[0472] Referring to FIG. 14, FIG. 30, and FIG. 33, at least a portion of the expansion plate (18) may be placed in the side space (10e). In the present embodiment, it is exemplified that the expansion plate (18) is placed in the side space (10e) rather than in the main chamber (10b, 10c, 10d) among the pair of side spaces (10e) placed inside the cooking appliance.
[0473] As an example, the expansion plate (18) can form a horizontal plane perpendicular to the vertical axis. For example, the expansion plate (18) can form a plane parallel to the upper surface of the cavity (11).
[0474] Preferably, the upper surface of the expansion plate (18) and the upper surface of the cavity (11) can form the same plane. The upper surface of the cavity (11) can define the bottom surface of the upper space portion (10i), and the upper surface of the expansion plate (18) can define the bottom surface of the expanded upper space portion (10j). Accordingly, the bottom surface of the upper space portion (10i) and the bottom surface of the expanded upper space portion (10j) can be arranged on the same plane.
[0475] The expanded upper space (10j) provided as described above can be connected to the upper space (10i) from the upper side of the side space (10e). That is, the expanded upper space (10j) is arranged on the upper side of the side space (10e) and the lateral side of the upper space (10i), and can be connected laterally to the upper space (10i).
[0476] According to the present embodiment, the upper space (10i) and the expanded upper space (10j) are connected as one on the upper side of the cavity (11), and accordingly, an exhaust space (10i, 10j) can be formed on the upper side of the cavity (11) and the side space (10e). In the present embodiment, the exhaust space (10i, 10j) can be defined as a space in which the upper space (10i) and the expanded upper space (10j) are connected as one on the upper side of the cavity (11) and the expanded plate (18) that are connected as one.
[0477] In this way, the exhaust space (10i, 10j) formed on the upper side of the cavity (11) and the expansion plate (18) can be connected to the exhaust ports (2, 3, 4) arranged on the upper surface of the main body (10). The exhaust ports (2, 3, 4) can open the space where the upper space (10i) and the expanded upper space (10j) are connected, i.e., the exhaust space (10i, 10j), to the outside of the main body (10).
[0478] The side space (10e) and the rear space (10f) can be connected to the lower space. The side space (10e) and the rear space (10f) can be connected to the lower space in the vertical direction or in the lateral direction. The intake port (1) is connected to the lower space, and can be connected to the intake port (1) through the lower space of the side space (10e) and the rear space (10f).
[0479] A part of the expansion plate (18) may be placed in the rear space (10f). Accordingly, a part of the expansion plate (18) (18a; hereinafter referred to as “side compartment of the expansion plate”) may be placed in the side space (10e), and another part of the expansion plate (18) (18b; hereinafter referred to as “rear compartment of the expansion plate”) may be placed in the rear space (10f).
[0480] As described above, the side partition (18a) of the expansion plate (18) can partition the side space (10e) so that a part of the side space (10e) is separated into an expanded upper space (10j). In addition, the rear partition (18b) of the expansion plate (18) can partition a part of the rear space (10f) so that a part of the rear space (10f) is separated into an expanded upper space (10j).
[0481] That is, the expansion plate (18) can partition a portion of the rear space (10f) and the side space (10e) so that a portion of the side space (10e) and the rear space (10f) are separated into an expanded upper space (10j).
[0482] A first connecting portion (18c) may be provided on the expansion plate (18). The first connecting portion (18c) may be provided for connecting the expansion plate (18) and the cavity (11). As an example, the first connecting portion (18c) may be formed to protrude horizontally from at least one of the side compartment (18a) and the rear compartment (18b). This first connecting portion (18c) may face the upper surface of the cavity (11) in the vertical direction and may be connected to the cavity (11).
[0483] The connection between the first joint (18c) and the cavity (11) may be made by a joining method such as welding, or by a fastening method such as screwing.
[0484] In this embodiment, the first connecting portion (18c) is exemplified as being formed to protrude laterally from the side compartment (18a). As another example, the first connecting portion (18c) may be formed to protrude forward from the rear compartment (18b). As yet another example, the first connecting portion (18c) may protrude vertically from at least one of the side compartment (18a) and the rear compartment (18b) and be coupled to the side surface of the cavity (11).
[0485] Additionally, the expansion plate (18) may include at least one of a second coupling portion (18d) and a third coupling portion (18e). The second coupling portion (18d) and the third coupling portion (18e) may be provided for coupling between the expansion plate (18) and the cabinet (13).
[0486] The second connecting portion (18d) may be provided in a protruding form from the side compartment (18a) or the first connecting portion (18c). In the present embodiment, the first connecting portion (18c) is exemplified as protruding horizontally from the side compartment (18a), and the second connecting portion (18d) is exemplified as protruding vertically from the first connecting portion (18c).
[0487] As an example, the second connecting portion (18d) may form a vertical wall orthogonal to the lateral axis. A plane parallel to the upper surface of the cabinet (13) may be formed at the upper end of the second connecting portion (18d).
[0488] The third connecting portion (18e) may be provided in a protruding form from the rear compartment (18b). For example, the third connecting portion (18e) may form a vertical wall perpendicular to the front-rear axis. A plane parallel to the upper surface of the cabinet (13) may be formed at the upper end of the third connecting portion (18e).
[0489] The vertical lengths of the second coupling portion (18d) and the third coupling portion can be set to lengths corresponding to the distance between the expansion plate (18) and the cabinet (13), respectively. The second coupling portion (18d) and the third coupling portion (18e) formed in this manner can be coupled to the cabinet (13) at the lower side of the cabinet (13).
[0490] By the connection between the second connecting portion (18d) and the cabinet (13) and the connection between the third connecting portion (18e) and the cabinet (13), the expansion plate (18) can support the cabinet (13) so that the upper surface of the cabinet (13) does not sag downward. In addition, the expansion plate (18) can be stably fixed inside the cooking appliance by being connected to various structures at various locations using the first connecting portion (18c), the second connecting portion (18d), and the third connecting portion (18e).
[0491] As an example, the second connecting portion (18d) may be arranged between the upper space portion (10i) and the expanded upper space portion (10j). That is, the second connecting portion (18d) may be arranged in the exhaust space (10i, 10j) in the form of a vertical wall that laterally blocks a portion between the upper space portion (10i) and the expanded upper space portion (10j).
[0492] A plurality of ventilation holes may be provided in this second joint portion (18d). Each ventilation hole may be formed to penetrate laterally through the second joint portion (18d), and the ventilation holes may be arranged in most areas of the second joint portion (18d).
[0493] The second joint (18d) having a plurality of ventilation holes in this way can provide a structure for joining the expansion plate (18) and the cabinet (13), while minimizing the obstruction of the air flow within the exhaust space (10i, 10j) due to the second joint (18d).
[0494] In this embodiment, the third coupling portion (18e) is exemplified as being positioned in an area where the rear space portion (10f) and the upper space portion (10i) overlap or in an area very close thereto. This third coupling portion (18e) may be positioned adjacent to the rear fan assembly (100) positioned in the rear space portion (10f).
[0495] In the third coupling portion (18e) arranged in this manner, electrical components related to the rear fan assembly (100), such as capacitors connected to the rear fan assembly (100), can be coupled. That is, the third coupling portion (18e) can simultaneously serve to provide a structure for coupling between the expansion plate (18) and the cabinet (13) and to provide a structure for installing electrical components related to the rear fan assembly (100).
[0496] [Exhaust duct]
[0497] Fig. 34 is a cross-sectional side view showing the side shape of an exhaust duct, Fig. 35 is a plan view showing a state in which a duct bracket is installed on the upper surface of a cavity, and Fig. 36 is a drawing showing a state in which an exhaust duct is installed on a duct bracket.
[0498] Referring to FIGS. 33 to 35, the exhaust duct (70) may form a flow path therein that is connected to the circulating air outlet (11b). As an example, the exhaust duct (70) may be formed in a polyhedral shape in which the front-rear length is much longer than the lateral length and the vertical length.
[0499] The rear end of the exhaust duct (70) can be arranged between the rear surface of the cavity (11) and the circulating air outlet (11b). And the front end of the exhaust duct (70) can be arranged between the front-rear center of the cavity (11) and the front surface of the cavity (11).
[0500] For example, the rear end of the exhaust duct (70) may be positioned very close to the rear surface of the cavity (11), and the front end of the exhaust duct (70) may be positioned very close to the front surface of the cavity (11).
[0501] A space is formed inside the exhaust duct (70), and this space can form a flow path (70a) that is connected to the circulating air outlet (11b) inside the exhaust duct (70). A duct inlet (70b) and a duct outlet (70c) can be provided in this exhaust duct (70).
[0502] The duct inlet (70b) is provided so that the duct (70a) can be opened toward the circulating air outlet (11b) on one longitudinal side of the duct (70a). In addition, the duct outlet (70c) is provided so that the duct inside the exhaust duct (70) can be opened toward the common exhaust port (3a).
[0503] As an example, the duct inlet (70b) may be formed in a form in which the bottom surface of the exhaust duct (70) is open. At least a portion of the duct inlet (70b) may overlap the circulating air outlet (11b) in the vertical direction.
[0504] And the duct outlet (70c) may be formed in a form in which a portion of the upper surface of the exhaust duct (70) is open. The duct outlet (70c) may be positioned at a position tilted forward from the center in the front-rear direction of the exhaust duct (70). This duct outlet (70c) may be positioned adjacent to the common exhaust port (3a).
[0505] In the lateral direction, the duct outlet (70c) may be arranged at a position closest to the common exhaust outlet (3a) among the multiple exhaust outlets (2, 3, 4) arranged laterally. This duct outlet (70c) may be arranged to overlap at least a portion of the common exhaust outlet (3a) in the vertical direction.
[0506] The cooking appliance of the present embodiment may further include a humidity sensor (7). The humidity sensor (7) is installed in the exhaust duct (70) and is provided to measure humidity in the duct (70a).
[0507] The above humidity sensor (7) is provided to measure the humidity of air flowing into the duct (70a) through the circulating air outlet (11b) in the cooking room. In order for the humidity of the air flowing into the duct (70a) to be effectively measured by the humidity sensor (7), a duct (70a) of sufficient length is required.
[0508] To this end, the circulating air outlet (11b) is positioned at a rearwardly tilted position in the upper space (10i), the duct outlet (70c) is positioned at a forwardly tilted position in the upper space (10i), and the exhaust duct (70) can be formed to a length sufficient to cover them.
[0509] The exhaust duct (70) of the present embodiment can be arranged between the upper surface of the cavity (11) and the upper surface of the cabinet (13) in the vertical direction. This exhaust duct (70) can include a height change section (71).
[0510] The height change section (71) is a section in which the height changes along the longitudinal direction of the flow path (70a) of the exhaust duct (70). For example, the height change section (71) may be a section in which the height changes along the front-rear direction of the exhaust duct (70).
[0511] According to the present embodiment, the circulating air outlet (11b) provided in the cavity (11) is positioned lower than the second exhaust port (3) provided on the upper surface of the cabinet (13). In the height change section (71), the height of the exhaust duct (70) may decrease in the direction toward one side of the longitudinal direction of the flow path (70a), for example, toward the rear.
[0512] That is, in the height change section (71), the upper surface of the exhaust duct (70) can form a slope whose height decreases as it goes toward one side of the longitudinal direction of the flow path (70a).
[0513] In other words, in the height change section (71), the height of the exhaust duct (70) may increase in the direction toward the other side of the longitudinal direction of the euro (70a), for example, toward the front.
[0514] In the height change section (71), a passage space (10k) may be formed between the upper surface of the exhaust duct (70) and the upper surface of the cabinet (13). The passage space (10k) may be formed on the upper side of the exhaust duct (70) as a passage that laterally connects a space on one side of the upper space (10i) of the exhaust duct (70) and a space on the other side of the upper space (10i) of the exhaust duct (70). In the present embodiment, the passage space (10k) may be formed in a form in which the vertical width of the passage space (10k) expands as it goes rearward.
[0515] Meanwhile, the cooking appliance of the present embodiment may further include a duct bracket (75). The duct bracket (75) may be provided for coupling between the exhaust duct (70) and the cavity (11). This duct bracket (75) may be coupled to the upper surface of the cavity (11). In addition, the exhaust duct (70) may be detachably coupled to the duct bracket (75).
[0516] As an example, a duct bracket (75) may include a bracket body (76) and a flange portion (77).
[0517] The bracket body (76) is a part provided for the connection between the duct bracket (75) and the exhaust duct (70) among the duct brackets (75). The bracket body (76) can be connected to the upper surface of the cavity (11) and connected to the exhaust duct (70).
[0518] The flange portion (77) is a portion provided for the connection between the duct bracket (75) and the cavity (11). The flange portion (77) can be joined to the upper surface of the cavity (11) to connect the bracket body portion (76) to the upper surface of the cavity (11).
[0519] The flange portion (77) can form a plane parallel to the upper surface of the cavity (11) and can be arranged to be in vertical contact with the upper surface of the cavity (11). The connection between the flange portion (77) and the cavity (11) can be made by a joining method such as welding.
[0520] Referring to FIGS. 35 and 36, a joining surface (72) may be provided in the exhaust duct (70). The joining surface (72) may be provided at the lower end of the exhaust duct (70) and may form a surface that vertically contacts the upper surface of the bracket body (76). As an example, the upper surface of the bracket body (76) may form a horizontal plane perpendicular to the vertical axis, and the joining surface (72) may form a plane parallel thereto.
[0521] And the duct bracket (75) may further include a first duct joint portion (78) that is joined to the joint surface (72). The first duct joint portion (78) may be detachably joined to the joint surface (72) while the joint surface (72) is in vertical contact with the bracket body portion (76).
[0522] As an example, the first duct joint (78) may include a vertical protrusion (78a) and a horizontal protrusion (78b). The vertical protrusion (78a) may be formed in a shape that protrudes upward from the bracket body (76). And the horizontal protrusion (78b) may be formed in a shape that protrudes horizontally from the vertical protrusion (78a), more specifically, in the front-back direction.
[0523] As an example, the transverse projection (78b) may protrude rearward from the upper end of the vertical projection (78a). In this embodiment, the first duct joint portion (78) is exemplified as being formed in a "Γ" shape protruding from the bracket body portion (76).
[0524] The vertical protrusion (78a) can penetrate the joint surface (72) in the vertical direction through a slit (73) formed in the joint surface (72). The horizontal protrusion (78b) protruding from the upper end of the vertical protrusion (78a) can restrict the upward movement of the duct bracket (75) on the upper side of the joint surface (72).
[0525] The slit (73) can be provided so that the entire first duct joint (78) can pass through the slit (73). When the horizontal protrusion (78b) passes through the slit (73) and is positioned on the upper side of the joint surface (72) and the joint surface (72) is in contact with the upper surface of the bracket body (76), and the exhaust duct moves rearward so that the horizontal protrusion (78b) can move toward the rear side of the slit (73), the horizontal protrusion (78b) can restrain the upward movement of the duct bracket (75) on the upper side of the joint surface (72).
[0526] By the fitting connection between the first duct joint (78) and the joining surface (72) formed in this manner, the exhaust duct (70) can be temporarily fixed to the duct bracket (75). That is, by the fitting connection between the first duct joint (78) and the joining surface (72), the position of the exhaust duct (70) relative to the duct bracket (75) can be temporarily fixed.
[0527] As an example, a plurality of first duct joints (78) may be arranged laterally at a predetermined interval on the duct bracket (75). Accordingly, the exhaust duct (70) may be temporarily fixed by the first duct joints (78) at a plurality of points in the lateral direction.
[0528] The duct bracket (75) may further include a second duct joint (79). The second duct joint (79) may be provided for jointing between the exhaust duct (70) and the duct bracket (75) using a fastening member (s) such as a screw.
[0529] As an example, the fastening member (s) can penetrate the upper surface and the joining surface (72) of the bracket body (76) and join the duct bracket (75) and the exhaust duct (70). A second duct joining member (79) can be provided for joining with such fastening member (s).
[0530] As an example, the second duct joint (79) may form a convex plane upward from the upper surface of the bracket body (76), and a joint hole for jointing with a joint member (s) may be provided in the second duct joint (79).
[0531] As described above, the exhaust duct (70) can be installed on the upper surface of the cavity (11) via a duct bracket (75).
[0532] In order to install the exhaust duct (70) in the cavity (11) so that the exhaust duct (70) can be separated from the cavity (11) as needed, it is necessary to connect the exhaust duct (70) to the cavity (11) using a fastening member such as a screw.
[0533] However, in this case, fastening holes for screw fastening must be formed in the cavity (11), and it is not desirable for unnecessary damage to be inflicted on the cavity (11) due to these fastening holes.
[0534] In addition, the damage to the cavity (11) may become greater during the process of fastening the screw to the cavity (11), and the cavity (11) may be severely damaged during the process of removing the screw from the cavity (11) or re-fastening the screw to the cavity (11) for disassembling and reassembling the exhaust duct (70).
[0535] To prevent damage to the cavity (11), the exhaust duct (70) may be welded or bonded to the cavity (11). However, in this case, it becomes very difficult to separate the exhaust duct (70) from the cavity (11), and the cavity (11) may be damaged during the process of separating the exhaust duct (70) from the cavity (11).
[0536] Considering these points, in this embodiment, a duct bracket (75) is welded or bonded to a cavity (11), and an exhaust duct (70) can be detachably connected to the duct bracket (75).
[0537] Accordingly, since the connection between the cavity (11) and the duct bracket (75) is made by welding or adhesive bonding, damage to the cavity (11) due to perforation, etc. can be minimized.
[0538] In addition, since the exhaust duct (70) is detachably connected to the duct bracket (75) attached to the cavity (11) in this way, the exhaust duct (70) can be easily and quickly separated from the cavity (11) as needed, and damage to the cavity (11) that may occur during the disassembly and reassembly process of the exhaust duct (70) can be minimized.
[0539] In addition, since the joint position of the exhaust duct (70) relative to the duct bracket (75) can be guided and temporarily fixed by the fitting joint between the first duct joint (78) and the joint surface (72), the installation work of the exhaust duct (70) can be performed more easily and quickly.
[0540] [Example of a lamp cover]
[0541] Fig. 37 is an enlarged view of the lamp cover and its surroundings, and Fig. 38 is a plan view of the lamp cover shown in Fig. 37.
[0542] Referring to FIG. 31, FIG. 37 and FIG. 38, a lamp (8) may be provided inside the main body (10). The lamp (8) is provided to illuminate the cooking chamber (10a).
[0543] As an example, the lamp (8) may be installed on the upper surface of the cavity (11). At least a portion of the lamp (8) may be exposed to the upper side of the cavity (11). For example, a portion of the lamp (8) installed on the upper surface of the cavity (11) may be exposed to the upper space (10i).
[0544] The cooking appliance of the present embodiment may include a lamp cover (80). The lamp cover (80) is provided to cover the lamp (8). The lamp cover (80) may cover the lamp (8) from the upper side of the cavity (11) so that the space surrounding the lamp (8) is separated from the upper space (10i).
[0545] As an example, the lamp cover (80) may include a cover upper surface portion (81) and a cover side portion (82). The cover upper surface portion (81) covers the lamp (8) from the upper side, and the cover side portion (82) is provided to surround the lamp from the horizontal outer side.
[0546] As an example, the cover upper surface (81) can form a horizontal plane that is spaced apart from the upper surface of the cavity (11) in the vertical direction by a predetermined distance. In addition, the cover side surface (82) can form a vertical wall surface that connects the upper surface of the cavity (11) and the cover upper surface (81).
[0547] As an example, the lamp cover (80) may be formed in a hexahedral shape with an open lower side. The lamp (8) may be arranged in a form surrounded by the cover upper surface portion (81) and the cover side portion (82).
[0548] The lamp cover (80) may further include a sealing portion (83). The sealing portion (83) may be provided in surface contact with the upper surface of the cavity (11) and may be connected to the lower end of the cover side portion (82). As an example, the sealing portion (83) may extend horizontally from the lower end of the cover side portion (82) and form a plane parallel to the upper surface of the cavity (11).
[0549] The sealing portion (83) can be in surface contact with the upper surface of the cavity (11) and can serve to ensure that the lamp cover (80) is in close contact with the upper surface of the cavity (11). Accordingly, the space inside the lamp cover (80) surrounding the lamp (8) can be reliably separated from the upper space (10i), and the inflow of air from the upper space (10i) into the interior of the lamp cover (80) can be effectively blocked.
[0550] The lamp cover (80) of the present embodiment can be placed between the upper surface of the cavity (11) and the upper surface of the cabinet (13) in the vertical direction. In addition, the lamp cover (80) can be placed adjacent to the front surface of the main body (10).
[0551] According to the present embodiment, the front plate (12) may be formed so that the upper end of the front plate (12) is positioned higher than the upper surface of the cavity (11). An upper surface portion (12a) may be provided on the upper end of the front plate (12). The upper surface portion (12a) may form a horizontal surface that protrudes rearward from a position higher than the cavity (11).
[0552] The lamp cover (80) may be positioned adjacent to the front plate (12). As an example, the lamp cover (80) may be positioned at a position where the front end of the lamp cover (80) is in close contact with the back surface of the front plate (12).
[0553] The cover upper surface (81) of the lamp cover (80) can form a slope whose height changes along the front-back direction. As an example, the cover upper surface (81) can form a slope whose height decreases as it goes toward the rear.
[0554] The above lamp cover (80) can be coupled to the front plate (12). A cover coupling portion (84) can be provided on the lamp cover (80). The cover coupling portion (84) can protrude rearward from the lamp cover (80) so as to be in vertical contact with the upper surface portion (12a) of the front plate (12).
[0555] This cover joint (84) can be formed in a shape that protrudes upward and rearward from the front end of the cover upper surface (81). As an example, the cover joint (84) can be formed in a shape that protrudes in a "Γ" shape from the front end of the cover upper surface (81). As an example, the connection between the cover joint (84) and the upper surface (12a) can be made by a fastening member (s) such as a screw.
[0556] According to the present embodiment, the lamp cover (80) is only coupled to the front plate (12) and not coupled to the cavity (11). For example, the lamp cover (80) is only coupled to the upper surface of the cavity (11) through the contact portion (83) and is not coupled to the cavity (11). This is to enable the lamp cover (80) to be detachably coupled to the main body (10) while avoiding unnecessary damage to the cavity (11).
[0557] To this end, the lamp cover (80) can be detachably coupled to the main body (10) by being coupled to the front plate (12) through the cover coupling portion (84) and the upper surface portion (12a). That is, the cover coupling portion (84) can be provided so that the lamp cover (80) can be coupled to the front plate (12) instead of the cavity (11).
[0558] According to the present embodiment, in order to illuminate the cooking chamber (10a), at least a portion of the lamp (8) is exposed to the interior of the cooking chamber (10a). In addition, in order to connect the lamp (8) to other electrical components, a portion of the lamp (8) is exposed to the exterior of the cooking chamber (10a). For example, a connection between a wire for power supply and the lamp (8) can be made through a portion of the lamp (8) exposed to the exterior of the cooking chamber (10a).
[0559] According to the present embodiment, the lamp (8) is installed on the upper surface of the cavity (11), and thus a part of the lamp (8) is exposed to the upper space of the cavity (11), i.e., the upper space portion (10i). As a part of the lamp (8) is exposed to the upper space portion (10i), the lamp (8) may be exposed to vapor and heat.
[0560] Among the cooking gas that passes through the upper space (10i) after being sucked in by the blower (100, 200), oil vapor, hot vapor, etc. may be included. The cooking gas containing such oil vapor and hot vapor may come into contact with the lamp (8) while passing through the upper space (10i), which may result in contamination or malfunction of the lamp (8).
[0561] Considering these points, in this embodiment, a lamp cover (80) is installed in the upper space (10i). The lamp cover (80) covers the lamp (8) from the upper side of the cavity (11) so that the space surrounding the lamp (8) is separated from the upper space (10i), thereby protecting the lamp (8) from vapor and heat.
[0562] In conventional cooking appliances, the blower is positioned in the upper space, not the rear space. In this case, the upper space must have sufficient space to accommodate the blower. In such conventional cooking appliances, the height of the upper space must be significantly higher than that of the upper space (10i) of the cooking appliance of the present embodiment.
[0563] In addition, as the blower is positioned in the upper space, a flow path-forming member is installed in the upper space to form an exhaust path within the upper space in conventional cooking appliances. This flow path-forming member forms an exhaust path within the upper space that connects the blower and the exhaust port positioned on the front side of conventional cooking appliances.
[0564] In conventional cooking appliances, the guiding member may be formed in a shape including a pair of side walls spaced laterally apart from each other by a predetermined distance and a bottom surface connecting the side walls from the bottom. For example, the guiding member may be formed in a "U" shape.
[0565] The above-mentioned flow-forming member can be installed on the upper side of the cavity. This flow-forming member can be detachably installed on the upper side of the cavity, and the lower surface of the flow-forming member is secured to the upper surface of the cavity.
[0566] The lamp installed on the upper surface of the cavity is positioned below the flow-forming member. That is, in conventional cooking appliances, the lamp is covered by the lower surface of the flow-forming member and is not exposed to the exhaust duct. Therefore, conventional cooking appliances do not require a separate structure to cover the lamp, other than the flow-forming member.
[0567] In contrast, in the cooking appliance of the present embodiment, the blower (100, 200) is arranged in the rear space (10f). Therefore, in the cooking appliance of the present embodiment, there is no need to secure the space required for installing the blower (100, 200) in the upper space (10i). In the cooking appliance of the present embodiment, the height of the upper space (10i) can be significantly lowered compared to the height of the upper space of a conventional cooking appliance.
[0568] As the height of the upper space (10i) decreases, it becomes difficult to secure the space required for installing a structure such as a flow path forming member of a conventional cooking appliance in the upper space (10i). In addition, in the cooking appliance of the present embodiment, since the blower (100, 200) and the flow path forming member (30) are arranged in the rear space (10f), there is no need to install a structure for forming an exhaust path in the upper space (10i).
[0569] As the height of the upper space (10i) is lowered, the effect of shortening the vertical length of the cooking appliance and reducing the overall size of the cooking chamber (10a) relative to the volume of the cooking chamber can be provided. However, since a structure such as a flow-forming member of a conventional cooking appliance is not installed in the upper space (10i), a problem arises in that the lamp (8) is exposed to the upper space (10i).
[0570] Taking these points into consideration, in the present embodiment, a lamp cover (80) is installed in the upper space (10i), and the lamp cover (80) can cover the lamp (8) from the upper side of the cavity (11) so that the space surrounding the lamp (8) is separated from the upper space (10i). As a result, the goal of shortening the vertical length of the upper space (10i) and the goal of protecting the lamp (8) from vapor and heat can be satisfied at the same time.
[0571] [Other examples of lamp covers]
[0572] Fig. 39 is a rear perspective view illustrating a cooking appliance to which another example of a lamp cover is applied, and Fig. 40 is a perspective view illustrating the lamp cover illustrated in Fig. 39 in an exploded state. In addition, Fig. 41 is an exploded perspective view illustrating the lamp cover illustrated in Fig. 40 in an exploded state, and Fig. 42 is an exploded perspective view illustrating the vent grill and lamp cover in an exploded state.
[0573] Referring to FIGS. 39 to 41, the lamp cover (85) may be provided in a form that includes an opening / closing cover (86b). This lamp cover (85) may include a cover upper surface portion (86), a cover side portion (87), a contact portion (88), and a cover connecting portion (89), similar to the lamp cover exemplified in the above-described embodiment, and may further include an opening / closing cover (86b).
[0574] A through hole (86a) may be provided on the upper surface of the lamp cover (85) of the present embodiment. The through hole (86a) may be formed to open the upper side of the internal space of the lamp cover (85) and penetrate vertically through the upper surface portion (86) of the cover. By means of this through hole (86a), the lamp (8) may be exposed to the upper side of the lamp cover (85).
[0575] The opening / closing cover (86b) is installed on the lamp cover (85), more specifically, on the cover upper surface (86), and can open / close the through hole (86a). As an example, the opening / closing cover (86b) can be detachably connected to the cover upper surface (86). For example, the opening / closing cover (86b) covers the through hole (86a) from the upper side and can be detached from the cover upper surface (86) upward.
[0576] Referring to FIGS. 39 to 42, the lamp cover (85) may be positioned on the lower side of any one of the plurality of second exhaust ports (2). For example, at least a portion of the lamp cover (85) may be positioned on the vertical lower side of any one of the plurality of second exhaust ports (2).
[0577] Meanwhile, the cooking appliance may further include at least one vent grill (9). Each vent grill (9) may cover the second exhaust port (3) or the cold air inlet port (5) and may be coupled to the cabinet (13). Each vent grill (9) may be detachably coupled to the cabinet (13).
[0578] For example, each vent grill (9) can be mounted on the upper surface of the cabinet (13) and cover the second exhaust port (3) or the cold air inlet port (5), and can be lifted upward from the upper surface of the cabinet (13) and separated from the cabinet (13).
[0579] As an example, the opening / closing cover (86b) may be arranged on the vertical lower side of any one of the plurality of second exhaust ports (2). With respect to the vertical direction, the through hole (86a) may be arranged between the second exhaust port (3) and the lamp (8), and the opening / closing cover (86b) may be arranged between the vent grill (9) installed in the second exhaust port (3) and the lamp (8). When viewed from above, when the vent grill (9) is removed from the second exhaust port (3), the opening / closing cover (86b) becomes visible, and when the opening / closing cover (86b) is removed in this state, the lamp (8) becomes visible.
[0580] As the lamp cover (85) and the opening / closing cover (86b) are installed inside the main body (10) in the above-described form, maintenance work on the lamp (8) can be performed while the vent grill (9) and the opening / closing cover (86b) are sequentially removed from the cabinet (13) and the cover upper surface (86).
[0581] That is, the lamp cover (85) of the present embodiment can provide the effect of enabling maintenance work on the lamp (8) to be performed easily and quickly by enabling access to the lamp (8) simply by separating the vent grill (9) and the opening / closing cover (86b).
[0582] [Type of exhaust through exhaust space]
[0583] Referring to FIG. 16 and FIGS. 31 to 33, an upper space portion (10i) may be formed on the upper side of the cavity (11). In addition, an extended upper space portion (10j) may be formed on the upper side of the side space portion (10e) other than the main chamber (10b, 10c, 10d).
[0584] As described above, the upper space (10i) and the extended upper space (10j) are connected as one on the upper side of the cavity (11), and accordingly, an exhaust space (10i, 10j) can be formed on the upper side of the cavity (11) and the side space (10e).
[0585] The expanded upper space (10j) can be formed by an expansion plate (18) that divides the side space (10e) into upper and lower sections. In the present embodiment, the expansion plate (18) can serve to laterally expand the exhaust space (10i, 10j) by making the exhaust space (10i, 10j) a space that includes not only the upper space (10i) but also the expanded upper space (10j). In addition, the expansion plate (18) can serve to separate the side space (10e) from the exhaust space (10i, 10j).
[0586] As the exhaust space (10i, 10j) is expanded into a space that includes both the upper space (10i) and the expanded upper space (10j), the size of the flow path required for the air to be discharged to the second exhaust port (3) through the exhaust space (10i, 10j) can be expanded. In particular, the size of the exhaust space (10i, 10j) can be expanded laterally by the size of the expanded upper space (10j).
[0587] That is, the expansion plate (18) of the present embodiment can provide an effect of allowing the size of the exhaust space (10i, 10j) to be expanded by dividing the side space (10e) so that an expanded upper space (10j) that can be connected to the upper space (10i) can be formed.
[0588] As described above, in the cooking appliance of the present embodiment, the blower (100, 200) is placed in the rear space (10f) rather than the upper space (10i). Accordingly, since there is no need to secure the space required for installing the blower (100, 200) in the upper space (10i), the height of the upper space (10i) can be lowered compared to when the blower is installed in the upper space.
[0589] In the cooking appliance of the present embodiment, one of the methods for reducing the size of the entire cooking appliance while minimizing the reduction in the volume of the cooking chamber, that is, for reducing the height of the entire cooking appliance while minimizing the reduction in the height of the cooking chamber, is to reduce the height of the upper space (10i).
[0590] Taking these points into consideration, in the cooking appliance of the present embodiment, the height of the upper space (10i) is set lower than the height of the upper space of a conventional cooking appliance. That is, in the cooking appliance of the present embodiment, the height of the upper space (10i) is set to a height significantly lower than the height at which the rear fan assembly (100) or the corner fan assembly (200) can be installed.
[0591] As the height of the upper space (10i) decreases in this way, the volume of the upper space (10i) also inevitably decreases. Since the upper space (10i) is a space related to exhaust, if the volume of the upper space (10i) decreases, the size of the flow path required for the air discharged to the second exhaust port (3) inevitably decreases accordingly.
[0592] If the size of the passage required for the airflow discharged through the second exhaust port (3) is reduced, the exhaust performance of the cooking appliance will inevitably deteriorate. Furthermore, if the exhaust performance of the cooking appliance is reduced, the intake performance of the cooking appliance will also inevitably deteriorate, ultimately resulting in a deterioration in the cooking gas removal performance of the cooking appliance.
[0593] Considering these points, in the present embodiment, the expanded upper space (10j) is separated from the side space (10e) by an expansion plate (18) that divides the side space (10e) into upper and lower parts, and this expanded upper space (10j) is connected to the upper space (10i), thereby allowing the size of the entire exhaust space (10i, 10j) including the upper space (10i) to be expanded. Accordingly, the size of the flow path required for the air to be discharged to the second exhaust port (3) through the exhaust space (10i, 10j) can be effectively expanded.
[0594] In this way, if the size of the path required for the flow of air discharged to the second exhaust port (3) through the exhaust space (10i, 10j) is expanded, the exhaust performance of the cooking appliance can be improved accordingly, and ultimately, the cooking gas removal performance of the cooking appliance can be improved.
[0595] Meanwhile, structures such as an exhaust duct (70) and a lamp cover (80) are arranged in the exhaust space (10i, 10j). These structures have a shape that protrudes from the upper surface of the cavity (11) into the exhaust space (10i, 10j) to perform their respective functions.
[0596] For example, the exhaust duct (70) is formed in a shape protruding from the upper surface of the cavity (11) to form a path for the flow of air discharged from the cooking chamber. And the lamp cover (80) is formed in a shape protruding from the upper surface of the cavity (11) to cover the lamp from the upper side and to be coupled to the front plate (12).
[0597] The exhaust duct (70) and the lamp cover (80) may each be formed in a shape including an inclined surface. That is, the exhaust duct (70) and the lamp cover (80) are inevitably formed in a shape that protrudes from the upper surface of the cavity (11) in order to perform their respective functions, but may be formed in a shape that allows the flow resistance generated by the exhaust duct (70) and the lamp cover (80) in the exhaust space (10i, 10j) to be reduced.
[0598] That is, in the present embodiment, the size of the exhaust space (10i, 10j) is expanded by the expanded upper space (10j), and accordingly, the size of the flow path required for the air to be discharged to the second exhaust port (3) through the exhaust space (10i, 10j) is expanded, and the exhaust duct (70) and the lamp cover (80) arranged in the exhaust space (10i, 10j) are provided in a shape that can reduce the flow resistance caused by them, so that the air to be discharged to the second exhaust port (3) through the exhaust space (10i, 10j) can flow smoothly.
[0599] Accordingly, the cooking appliance of the present embodiment can provide cooking gas removal performance equivalent to or superior to that of conventional cooking appliances with similar cooking capacity, while being smaller in overall size.
[0600] In addition, the above-mentioned expansion plate (18) can serve as a barrier that blocks the side space (10e) and the exhaust space (10i, 10j). Accordingly, the side space (10e) can be separated from the exhaust space (10i, 10j) by the expansion plate (18).
[0601] That is, a space is formed on the upper side of the expansion plate (18) by the expansion plate (18) in which the upper space (10i) and the expanded upper space (10j) are connected, but the passage between the side space (10e) and the exhaust space (10i, 10j) is blocked by the expansion plate (18).
[0602] According to the present embodiment, the side space (10e) is connected to the lower space formed between the intake port (1) and the cavity (11). Accordingly, the side space (10e) can be said to be a space connected to the intake port (1). And the exhaust space (10i, 10j) can be said to be a space connected to the second exhaust port (3). In other words, the side space (10e) can be said to be a space related to intake, and the exhaust space (10i, 10j) can be said to be a space related to exhaust.
[0603] The expansion plate (18) separates the exhaust space (10i, 10j) from the side space (10e), thereby separating the space associated with exhaust from the space associated with intake. Accordingly, the space associated with exhaust is expanded by the expanded upper space (10j), and the space associated with intake can be expanded by the amount of space occupied by the side space (10e).
[0604] That is, as the exhaust space (10i, 10j) and the side space (10e) are separated by the expansion plate (18), the space associated with exhaust and the space associated with intake can be secured to a sufficient size for intake or exhaust, respectively.
[0605] In addition, since the exhaust space (10i, 10j) and the side space (10e) are separated by the expansion plate (18), the phenomenon of air in the exhaust space (10i, 10j) being re-inhaled into the blower (100, 200), i.e., the occurrence of a backflow phenomenon, can be effectively suppressed, so that the exhaust performance of the cooking appliance can be effectively improved.
[0606] Meanwhile, in the cooking appliance of the present embodiment, a plurality of second exhaust ports (3) may be arranged. Each second exhaust port (3) is arranged on the upper surface of the main body (10), but is arranged at a position adjacent to the front of the main body (10), and may be connected to an exhaust space (10i, 10j).
[0607] In the main body (10), a cold air inlet (5) and a plurality of second exhaust ports (3) can be arranged laterally. In addition, any one of the plurality of second exhaust ports (3) can be provided as a common exhaust port (3a).
[0608] In this embodiment, the cold air inlet (5) is arranged on the left side of the second exhaust ports (3), and one of the plurality of second exhaust ports (3) arranged on the far right side is provided as a common exhaust port (3a).
[0609] At least a portion of the common exhaust port (3a) may be arranged to overlap at least a portion of the duct outlet (70c) provided in the exhaust duct (70). That is, when viewed from above, at least a portion of the duct outlet (70c) may be exposed upward through the common exhaust port (3a). Accordingly, air discharged through the duct outlet (70c) may be effectively discharged through the common exhaust port (3a).
[0610] Some of the air that flows into the cooking chamber (10b, 10c, 10d) through the cold air inlet (5) may flow into the cooking chamber (10a). The air that flows into the cooking chamber (10a) may be discharged to the exhaust duct (70) together with steam, gas, etc. generated in the cooking chamber (10a) during the cooking process of the cooking appliance.
[0611] Air drawn into the exhaust duct (70) can be discharged through the duct outlet (70c), and air discharged from the exhaust duct (70) can be discharged to the outside of the cooking appliance through the common exhaust port (3a). In other words, the common exhaust port (3a) can be an outlet used to discharge air discharged from the cooking chamber to the outside of the cooking appliance.
[0612] In this embodiment, at least a portion of the common exhaust port (3a) is exemplified as being arranged on the left side of the expanded upper space portion (10j). This common exhaust port (3a) may be arranged on the upper side of the boundary between the upper space portion (10i) and the expanded upper space portion (10j). That is, when viewed from above, the boundary between the upper space portion (10i) and the expanded upper space portion (10j) may be exposed to the upper side of the cooking appliance through the common exhaust port (3a).
[0613] As an example, approximately the left half of the common exhaust port (3a) may be placed on the upper side of the upper space portion (10i). And the remaining half of the common exhaust port (3a) may be placed on the upper side of the extended upper space portion (10j).
[0614] This common exhaust port (3a) can discharge together the air discharged from the exhaust duct (70) and the air introduced into the exhaust space (10i, 10j) from the blower (100, 200). In other words, the steam and gas discharged from the cooking chamber and the cooking gas sucked in through the blower (100, 200) can be discharged together through the common exhaust port (3a).
[0615] According to the present embodiment, the exhaust space (10i, 10j) includes an upper space (10i) and an expanded upper space (10j), and air sucked through the blower (100, 200) can flow not only to the upper space (10i) but also to the expanded upper space (10j). In particular, air flowing from the blower (100, 200) to the expanded upper space (10j) can be discharged to the outside of the cooking appliance through the common exhaust port (3a).
[0616] Of course, the air flowing from the blower (100, 200) to the expanded upper space (10j) is not necessarily discharged to the outside of the cooking appliance only through the common exhaust port (3a), and may also be discharged to the outside of the cooking appliance through a second exhaust port (3) other than the common exhaust port (3a).
[0617] If the expansion plate (18) is not provided inside the main body (10) and, accordingly, the expansion upper space (10j) is not formed inside the main body (10), the area occupied by the exhaust space (10i, 10j) is inevitably reduced to the upper space (10i).
[0618] In this case, most of the lower area of the common exhaust port (3a) is occupied by the exhaust duct (70), and it becomes difficult to form a passage connecting the common exhaust port (3a) and the exhaust space (10i, 10j).
[0619] Additionally, if the expansion plate (18) is not provided inside the main body (10), the common exhaust port (3a) is directly connected to the side space (10e). In this case, the suction force of the rear fan assembly (100) acting on the side space (10e) may affect the periphery of the common exhaust port (3a).
[0620] In this case, it becomes considerably difficult for the air flowing from the blower (100, 200) to the exhaust space (10i, 10j) to be discharged to the outside of the cooking appliance through the common exhaust port (3a). As a result, only the steam and gas discharged from the cooking chamber are mainly discharged through the common exhaust port (3a), and the cooking gas sucked in by the blower (100, 200) can hardly be discharged.
[0621] In contrast, in the cooking appliance of the present embodiment, the side space (10e) and the upper extended upper space (10j) are separated by an expansion plate (18), and the area occupied by the exhaust space (10i, 10j) can be expanded not only to the upper space (10i) but also to the upper extended upper space (10j), which is an area disposed below the common exhaust port (3a).
[0622] Accordingly, the cooking appliance of the present embodiment can discharge steam and gas discharged from the cooking chamber and cooking gas sucked in through the blower (100, 200) together through the common exhaust port (3a).
[0623] [Rear support member]
[0624] Fig. 43 is a rear perspective view showing a state in which a rear fan assembly is removed from a cooking appliance according to the first embodiment of the present invention, Fig. 44 is a rear perspective view showing the rear support member shown in Fig. 43 in a separated state, and Fig. 45 is a side view showing a state in which a cavity and a rear support member are coupled. In addition, Fig. 46 is a bottom perspective view showing an enlarged portion of a coupling portion between a cavity and a rear support member shown in Fig. 45, Fig. 47 is a side view showing a state in which a rear plate is coupled to the rear support member shown in Fig. 45, and Fig. 48 is a side cross-sectional view showing a coupling structure between a cavity, a rear support member, and a rear plate.
[0625] Referring to FIGS. 43 to 45, the cooking appliance of the present embodiment may include a rear support member (90). The rear support member (90) may be arranged on the rear side of the cavity (11).
[0626] As described above, a front plate may be placed on the front side of the cavity (11). The front plate (12) and the rear support member (90) may be placed spaced apart in the front-rear direction with the cavity (11) interposed therebetween and may be respectively coupled to the cavity (11).
[0627] As an example, the front plate (12) may be coupled to the front surface of the cavity (11), and the rear support member (90) may be coupled to the back surface of the cavity (11). As another example, the front plate (12) may be formed integrally with the cavity (11) to form the front surface of the cavity (11).
[0628] According to the present embodiment, the front plate (12) may be formed so that the lower end (12b) of the front plate (12) is positioned lower than the bottom surface of the cavity (11). For example, at least a portion of the front plate (12) may be positioned between the cavity (11) and the base plate (14).
[0629] The rear support member (90), like the front plate (12), may be formed so that the lower end of the rear support member (90) is positioned lower than the bottom surface of the cavity (11). For example, at least a portion of the rear support member (90) may be positioned between the cavity (11) and the base plate (14).
[0630] For this purpose, at least a portion of the rear support member (90) may protrude to a position lower than the bottom surface of the cavity (11). This rear support member (90) may contact the bottom surface at a position lower than the cavity (11) and support the cavity (11).
[0631] The rear support member (90) may include a front coupling portion (91) and a lower support portion (92). The front coupling portion (91) is provided to be coupled to the rear surface of the cavity (11). The lower support portion (92) may protrude downward from the front coupling portion (91).
[0632] The lower end of the lower support portion (92) may be positioned lower than the bottom surface of the cavity (11). This lower support portion (92) may contact the bottom surface at a position lower than the cavity (11) and support the front joint portion (91) and the cavity (11) coupled thereto.
[0633] Preferably, the lower end of the lower support member (92) may be positioned at a position corresponding to the position of the lower end (12b) of the front plate (12). For example, the protruding length of the lower support member (92) relative to the bottom surface of the cavity (11) and the protruding length of the front plate (12) may be set to be the same. Accordingly, the rear support member (90) can support the cavity (11) so that the cavity (11) can be maintained approximately horizontally.
[0634] In the forward and backward direction, a rear support member (90) can be placed between the cavity (11) and the rear plate (15). This rear support member (90) can be connected to the cavity (11) and the rear plate (15), respectively.
[0635] To this end, the rear support member (90) may further include a rear coupling portion (93) and a connecting portion (94). The rear coupling portion (93) is provided so as to be coupled to the front of the rear plate (15). In addition, the connecting portion (94) protrudes rearward from the front coupling portion (91) and may connect the front coupling portion (91) and the rear coupling portion (93).
[0636] The connecting portion (94) is arranged in the rear space (10f) and can be arranged on the lower side of the rear fan assembly (100). With respect to the vertical direction, the connecting portion (94) can be arranged between the rear fan assembly (100) and the base plate (14). This connecting portion (94) is provided so that the air of the rear space (10f) can flow in the vertical direction while passing through the connecting portion (94).
[0637] For this purpose, upper and lower penetration holes (94a) may be provided in the rear support member (90). The upper and lower penetration holes (94a) are provided so as to form a passage that opens the space between the cavity (11) and the base plate (14), i.e., between the lower space portion and the rear fan assembly (100).
[0638] As an example, the connecting portion (94) may form a horizontal plane that blocks the lower space portion and the rear fan assembly (100), and the upper and lower penetration holes (94a) may be formed to penetrate the connecting portion (94) in the upper and lower directions. The upper and lower penetration holes (94a) may form a passage necessary for air introduced into the lower space portion through the intake port (1) to flow toward the rear fan assembly (100) by passing through the rear support member (90).
[0639] That is, the connecting portion (94) can serve to maintain the gap between the cavity (11) and the rear plate (15) so that sufficient space required for air flow in the rear space (10f) can be secured.
[0640] Referring to FIGS. 44 to 47, this front coupling portion (91) is in contact with the back surface of the cavity (11) in the front-back direction and can be coupled with the back surface of the cavity (11).
[0641] The connection between the cavity (11) and the front coupling portion (91) can be achieved by at least one of a connection using a fastening member (s) such as a screw or a fitting connection. As an example, the front coupling portion (91) can be provided with at least one of a fitting connection portion (91a) and a fastening hole (91b). In the present embodiment, it is exemplified that both the fitting connection portion (91a) and the fastening hole (91b) are provided in the front coupling portion (91).
[0642] The fitting portion (91a) can be detachably connected to the back surface of the cavity (11). As an example, the lower end (11c) of the back surface of the cavity (11) can be formed to protrude further downward than the bottom surface of the cavity (11). The fitting portion (91a) is provided so that the lower end (11c) of the back surface of the cavity (11) can be connected.
[0643] As an example, the fitting portion (91a) can be formed to protrude rearward in an “L” shape from the front fitting portion (91), and the lower end (11c) of the rear surface of the cavity (11) can be fitted between the front surface of the front fitting portion (91) and the rear surface of the fitting portion (91a).
[0644] When assembling the cooking appliance, when the cavity (11) is turned over so that the bottom surface of the cavity (11) faces upward, and the rear support member (90) is turned over so that the lower support member (92) faces upward, and the lower end (11c) of the rear surface of the cavity (11) is fitted into the fitting portion (91a) so that the rear support member (90) hangs over the rear surface of the cavity (11), a fitting connection between the cavity (11) and the rear support member (90) can be made.
[0645] By the fitting connection between the cavity (11) and the rear support member (90) formed in this manner, the rear support member (90) can be temporarily fixed to the cavity (11). In this state where the rear support member (90) is temporarily fixed to the cavity (11), the front coupling portion (91) can be in contact with the back surface of the cavity (11) in the front-back direction.
[0646] In this state, when fastening is performed by a fastening member (s) such as a screw, the rear support member (90) can be firmly connected to the cavity (11).
[0647] That is, since the position of the rear support member (90) relative to the cavity (11) can be guided and temporarily fixed by the fitting connection between the cavity (11) and the fitting portion (91a), the installation work of the rear support member (90) can be performed more easily and quickly.
[0648] As described above, the rear support member (90) installed on the rear side of the cavity (11) can support the cavity (11) so that the cavity (11) does not fall backward during the assembly process of the cooking appliance.
[0649] As described above, a front plate (12) is installed on the front side of the cavity (11), and the lower end (12b) of the front plate (12) protrudes to a position lower than the bottom surface of the cavity (11). Therefore, if the front plate (12) is installed first with respect to the cavity (11) and the base plate (14) or the rear plate (15) is not installed yet, there is a high possibility that the cavity (11) will fall to the rear side due to the height difference between the front and rear sides of the cavity (11).
[0650] Considering these points, in this embodiment, the rear support member (90) is installed on the rear side of the cavity (11), and the rear side of the cavity (11) can be supported by the rear support member (90). That is, in this embodiment, the front plate (12) and the rear support member (90), which are arranged in the front-rear direction with the cavity (11) interposed therebetween, can support the cavity (11) on both sides in the front-rear direction.
[0651] Accordingly, even if the front plate (12) is installed first against the cavity (11) and the base plate (14) or the rear plate (15) is not installed yet, the cavity (11) can maintain a stable posture without falling over to the rear side and without being tilted to the front or rear side.
[0652] That is, the rear support member (90) of the present embodiment can contribute to enabling the assembly of the cooking appliance to be conveniently performed in a more stable environment by stably maintaining the posture of the cavity (11) so that the cavity (11) does not fall to the rear during the assembly process of the cooking appliance, and can provide the effect of suppressing the occurrence of various safety accidents that may occur due to the cavity (11) falling over during the assembly process of the cooking appliance.
[0653] In addition, the rear support member (90) can be combined with at least one of the rear plate (15) and the base plate (14), as illustrated in FIGS. 47 and 48. In the present embodiment, the rear support member (90) is exemplified as being combined with the rear plate (15) and the base plate (14), respectively.
[0654] As described above, the rear coupling member (93) can be coupled with the rear plate (15). And the lower end of the lower support member (92) can be coupled with the base plate (14). In this way, the rear support member (90) coupled with the rear plate (15) and the base plate (14), respectively, can effectively improve the structural stability of the cooking appliance by stably supporting the rear plate (15) and the base plate (14) to the cavity (11).
[0655] In addition, the rear support member (90) can provide an effect of increasing the suction flow rate by maintaining a gap between the cavity (11) and the rear plate (15) so that sufficient space required for air flow in the rear space (10f) can be secured.
[0656] [Other examples of cooking appliances]
[0657] FIG. 49 is a rear perspective view showing a state in which a cabinet is removed from a cooking appliance according to a second embodiment of the present invention, FIG. 50 is a rear perspective view showing a state in which a cabinet is removed from a cooking appliance according to a third embodiment of the present invention, and FIG. 51 is a rear perspective view showing a state in which a cabinet is removed from a cooking appliance according to a fourth embodiment of the present invention.
[0658] The main difference between the cooking appliances illustrated in FIGS. 49 to 51 and the cooking appliances exemplified in the above-described embodiments lies in the presence or absence of a corner fan assembly (200; see FIG. 5). The cooking appliances illustrated in FIGS. 49 to 51 are equipped with only a rear fan assembly (100) and not with a corner fan assembly (200).
[0659] Accordingly, a difference in the output of the blower occurs between the cooking appliances illustrated in FIGS. 49 to 51 and the cooking appliances exemplified in the aforementioned embodiments. That is, compared to a cooking appliance including both a corner fan assembly (200) and a rear fan assembly (100), the output of the blower in the cooking appliances illustrated in FIGS. 49 to 51 is relatively lower.
[0660] The cooking appliances illustrated in FIGS. 49 to 51 may share a body (10) of almost the same shape as the body of the cooking appliance exemplified in the above-described embodiment. That is, the cooking appliance of the present embodiment may be provided as various types of cooking appliances that differ only in the output of the blower by using a single body of a common shape.
[0661] The cooking appliance of this embodiment can provide the effect of enabling the easy, rapid, and low-cost manufacturing of various types of cooking appliances. Various embodiments of cooking appliances for achieving the above-mentioned purpose are exemplified below.
[0662] Referring to FIG. 49, the structure of the cooking appliance according to the second embodiment of the present invention is almost identical to the cooking appliance exemplified in the above-described embodiment, except for the blower and the flow path forming member (300).
[0663] That is, the main difference between the cooking appliance according to the second embodiment of the present invention and the cooking appliance exemplified in the above-described embodiment lies in the blower and the flow path forming member (300).
[0664] The euro-forming member (300) of the present embodiment may include a first euro plate (31) and a fastening plate (33). For example, the euro-forming member (300) of the present embodiment may be provided in a form in which the second euro plate (32) is removed from the euro-forming member (30; see FIG. 6) exemplified in the above-described embodiment.
[0665] As an example, the euro-forming member (300) of the present embodiment may be provided in a form in which the first euro plate (31) and the fastening plate (33) are formed integrally. As another example, the euro-forming member (300) may be provided in a form in which the first euro plate (31) and the fastening plate (33) are formed separately and assembled.
[0666] Accordingly, no structure that could block the first intake port (112) and the first discharge port (114) is placed on the left side of the rear fan assembly (100). In addition, the corner space (10g, 10h), more specifically, the lower corner space (10h), is maintained in an empty state.
[0667] The cooking appliance of the present embodiment may further include a cover (36). The cover (36) is provided to cover a through hole (41b; see FIG. 21) formed in a lateral support member (41). This cover (36) can be coupled to the lateral support member (41) to close the discharge hole (41a). By this cover (36), an unnecessary passage between the corner space member (10g, 10h) and the exhaust passage (A) can be closed.
[0668] Referring to FIG. 50, a flow forming member (400) provided in a cooking appliance according to a third embodiment of the present invention may be provided in a form including a first flow plate (31), an extension plate (34), and a fastening plate (33).
[0669] As an example, the euro-forming member (400) of the present embodiment may be provided in a form in which the first euro plate (31), the extension plate (34), and the fastening plate (33) are formed integrally. As another example, the euro-forming member (300) may be provided in a form in which the first euro plate (31), the extension plate (34), and the fastening plate (33) are formed separately and assembled.
[0670] In the euro-forming member (400), the first euro plate (31) can define the right boundary surface of the exhaust passage (A). And the extension plate (34) can define the left boundary surface of the exhaust passage (A) and can form a wall that blocks the first intake port (112) and the first discharge port (114) on the left side of the rear fan assembly (100).
[0671] Meanwhile, referring to FIG. 51, a cooking appliance according to a fourth embodiment of the present invention may include a flow-forming member (30) of the same shape as that exemplified in the first embodiment of the present invention. In addition, a cooking appliance according to a fourth embodiment of the present invention may further include a cover (36) of the same shape as that exemplified in the second embodiment of the present invention.
[0672] Accordingly, the right boundary surface of the exhaust passage (A) can be defined by the first flow plate (31). Also, on the left side of the rear fan assembly (100), the lower boundary surface of the exhaust passage (A) can be defined by the second flow plate (32). And the left boundary surface of the exhaust passage (A) can be defined by the lateral support member (41) and the cover (36).
[0673] While the present invention has been described with reference to the embodiments illustrated in the drawings, these are merely exemplary, and those skilled in the art will understand that various modifications and equivalent embodiments are possible. Accordingly, the true technical protection scope of the present invention should be defined by the following claims.
[0674] <Explanation of symbols>
[0675] 1: Intake
[0676] 2: First exhaust port
[0677] 3: Second exhaust port
[0678] 3a: Common exhaust vent
[0679] 4: Third exhaust port
[0680] 5: Cold air inlet
[0681] 10: Body
[0682] 10a: Kitchen
[0683] 10b, 10c, 10d: Battle room
[0684] 10b: Lower battle room
[0685] 10c: Upper battle room
[0686] 10d: Intake chamber
[0687] 10e: Lateral space
[0688] 10f: Rear space
[0689] 10g: Upper corner space
[0690] 10h: Lower corner space
[0691] 10i: Upper space
[0692] 10j: Extended upper space
[0693] 18: Expansion plate
[0694] 30,35,300,400: Euro forming member
[0695] 40,45: Support member
[0696] 50: Compartment plate
[0697] 60,65: Covering member
[0698] 70: Exhaust duct
[0699] 75: Duct bracket
[0700] 80,85: Lamp cover
[0701] 90: Rear support member
[0702] 100: Rear fan assembly
[0703] 200: Corner fan assembly
Claims
1. A main body having a cooking chamber formed inside a cavity, a rear space disposed at the rear side of the cavity, and an upper space disposed at the upper side of the cavity, and an exhaust port opening the upper space to the outside; and A cooking appliance including a blower for sucking air into the interior of the main body and discharging the sucked air into the upper space through the rear space.
2. In paragraph 1, It further includes an expansion plate arranged inside the above main body, Inside the above main body, a side space portion is provided that is arranged on the side of the cavity, The above expansion plate is a cooking appliance that divides the side space so that a part of the side space is separated into an expanded upper space.
3. In paragraph 2, The above blower includes a fan assembly that sucks in air from the lower side of the upper space and discharges the sucked air into the upper space and the expanded upper space. The above exhaust port is a cooking appliance that opens the upper space and the expanded upper space to the outside of the main body.
4. In paragraph 2, The above-mentioned expanded upper space portion is a cooking appliance that is connected to the upper space portion from the upper side of the side space portion.
5. In paragraph 2, A cooking appliance in which the above-mentioned expanded upper space portion is positioned above the above-mentioned side space portion and on the side of the above-mentioned upper space portion, and is connected laterally to the above-mentioned upper space portion.
6. In paragraph 2, A cooking appliance in which the upper surface of the cavity and the upper surface of the expansion plate are arranged on the same plane.
7. In paragraph 2, In the above body, an intake port is provided located lower than the cavity, In addition, the blower includes a fan assembly that sucks in air flowing into the interior of the main body through the intake port. A cooking appliance in which the above-mentioned intake port and the above-mentioned side space are connected.
8. In paragraph 2, The upper space and the extended upper space are connected as one to form an exhaust space on the upper side of the cavity and the side space, The above exhaust port is a cooking appliance that is connected to the above exhaust space.
9. In paragraph 2, Inside the above main body, a battle room is formed, The side space portions are respectively arranged on both sides of the lateral direction of the cavity, The above-mentioned main chamber is arranged in one of the above-mentioned pair of side spaces, A cooking appliance wherein the expansion plate is arranged in the other one of the pair of side spaces.
10. In paragraph 9, The above expansion plate is a cooking appliance that divides the side space and the rear space so that a part of the side space and the rear space are separated into the expanded upper space.
11. In paragraph 10, It further includes a flow path forming member that forms an exhaust path that guides the flow of air discharged from the above blower to the upper space, A cooking appliance in which the above-mentioned euro-forming member is arranged in the rear space and between the main chamber and the expansion plate.
12. In paragraph 11, The above blower is placed in the rear space, With respect to the vertical direction, at least a portion of the expansion plate is arranged between the blower and the upper space, A cooking appliance in which the above-mentioned euro-forming member includes a first euro plate that forms a vertical wall that blocks a lateral passage formed between the above-mentioned blower and the above-mentioned expansion plate, which are spaced apart in the vertical direction.
13. In paragraph 1, It further includes an expansion plate arranged on the upper side of the side space formed on the side of the cavity; Inside the above main body, an exhaust space is provided, which is arranged on the upper side of the cavity and the expansion plate. The above exhaust port opens the exhaust space to the outside of the main body, A cooking appliance in which the blower includes a fan assembly that sucks in air from the lower side of the exhaust space and discharges the sucked air into the exhaust space.
14. In paragraph 1, A plurality of the above exhaust ports are arranged at the upper part of the above body, Inside the above main body, a circulation air outlet is provided to form a passage connecting the cooking chamber and the upper space. A cooking appliance in which at least one of the plurality of exhaust ports is provided as a common exhaust port that discharges air that has flowed into the upper space through the blower and air that has flowed into the upper space through the circulating air discharge port together.
15. In paragraph 14, A main body is formed in one of the side space portions arranged on both sides of the cavity in the lateral direction, A cooking appliance in which at least one of the plurality of exhaust ports arranged laterally and located at a position furthest from the main chamber is provided as the common exhaust port.
16. In paragraph 14, A main body is formed in one of the side space portions arranged on both sides of the cavity in the lateral direction, In the above main body, a cold air inlet opening the above-mentioned battle room to the outside is provided, A plurality of the above exhaust ports and the above cold air inlets are arranged laterally, A cooking appliance in which at least one of the plurality of exhaust ports arranged laterally and located at a position furthest from the cold air inlet is provided as the common exhaust port.
17. In paragraph 14, It further includes an exhaust duct that guides the flow of air discharged from the above-mentioned cooking room to the above-mentioned common exhaust port, In the above exhaust duct, a duct outlet is provided that opens the inside of the exhaust duct toward the common exhaust port. A cooking appliance in which, with respect to the lateral direction, the duct outlet is positioned at a position closest to the common exhaust outlet among the plurality of exhaust outlets arranged laterally.
18. In paragraph 17, The above-mentioned common exhaust port is formed to penetrate vertically through the upper surface of the main body, A cooking appliance in which the above duct outlet is arranged to overlap at least a portion of the common exhaust port in the vertical direction.
19. In paragraph 14, It further includes an expansion plate arranged in a side space formed on the side of the above cavity; Inside the above main body, an exhaust space is provided, which is arranged on the upper side of the cavity and the expansion plate. A cooking appliance in which at least one of the plurality of laterally arranged exhaust ports, located closest to the expansion plate, serves as the common exhaust port.
20. In paragraph 19, A cooking appliance in which at least a portion of the common exhaust port is arranged to overlap the expansion plate in a vertical direction.
Citation Information
Patent Citations
Selective deposition of silicon nitride on silicon oxide using catalytic control
KR1020230014821A
A method for manufacturing a mold reflecting errors due to thermal expansion
KR1020240080303A
Apparatus and method for assisting remote medical treatment using an electronic stethoscope
KR1020240114930A
Microwave rice cooker
US20180153005A1
KR20220163837A