Integrated cooker
By setting up multiple air outlet channels and blocking components in the integrated stove to form an air curtain, the problem of oil mist diffusion is solved, improving user experience and sealing performance.
Patent Information
- Application Number
- CN202011419324.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-12-07
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2040-12-07
AI Technical Summary
Existing integrated cooktops are prone to oil mist diffusion during cooking, which affects the user experience.
An integrated stove was designed, including a cabinet, a cooktop, a blower assembly, and a smoke exhaust duct. By setting multiple air outlet ducts on the side of the cooktop to form an air curtain, and by using a blocking component to control the opening or closing of the smoke exhaust duct and the ventilation duct, the spread of oil fumes is prevented.
It effectively prevents oil mist from spreading, improves user experience, enhances sealing, and reduces the possibility of oil fumes entering the user's clothing.
Smart Images

Figure CN112413684B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of household appliances, and more specifically, to an integrated stove. Background Technology
[0002] Currently, more and more families are choosing integrated cooktops as their main kitchen appliance. Integrated cooktops have advantages such as small space occupation and multiple functional modules. They are kitchen appliances that integrate range hoods, gas stoves, disinfection cabinets, storage cabinets, steam ovens, and dishwashers, mainly solving problems such as cooking, fume extraction, tableware disinfection, tableware storage, food steaming and baking, and tableware cleaning.
[0003] Although existing integrated cooktops include a range hood, the heating effect of the gas stove during prolonged cooking can lead to a poor user experience and prevent the cooking from cooling down. In addition, a large amount of oil mist is generated during cooking, and since the spread of this oil mist cannot be effectively prevented, it can be inhaled by the user or adhere to their clothing. Summary of the Invention
[0004] The main objective of this invention is to provide an integrated stove to solve the problem of easy diffusion of oil mist generated by existing integrated stoves.
[0005] To achieve the above objectives, the present invention provides an integrated stove, comprising: a cabinet; a stove mounted on the cabinet; a blower assembly, at least a portion of which is mounted within the cabinet, the blower assembly including multiple air outlet channels and exhaust channels, the multiple air outlet channels being spaced apart on the cabinet and located to the side of the stove; a smoke exhaust channel disposed within the cabinet and communicating with the exhaust channels, the smoke exhaust channel being used to exhaust cooking fumes; and a blocking member disposed within the smoke exhaust channel and / or the exhaust channels, the blocking member having a blocking position and a yielding position, the blocking member being movably disposed between the blocking position and the yielding position to block or yield the smoke exhaust channel and / or the exhaust channels.
[0006] Furthermore, the blocking component is rotatably disposed along a predetermined axis, and at least a portion of the outer peripheral surface of the blocking component is in contact with the inner wall surface of the smoke exhaust duct and / or the inner wall surface of the air exhaust duct.
[0007] Furthermore, the blocking component includes: a first body; a second body, the first body and the second body being connected, and the first body and the second body being rotatably disposed relative to each other.
[0008] Furthermore, the blocking component also includes a rotating shaft, through which the first body and the second body are connected, and the first body and / or the second body are rotatably disposed about the rotating shaft.
[0009] Furthermore, a first connecting plate is provided on the first body, the first end of the first connecting plate is connected to the first body, the second end of the first connecting plate extends in a direction away from the first body, and a first through hole is provided on the first connecting plate; a second connecting plate is provided on the second body, the first end of the second connecting plate is connected to the second body, the second end of the second connecting plate extends in a direction away from the second body; a second through hole is provided on the second connecting plate, the first through hole and the second through hole are opposite to each other, and at least a portion of the rotating shaft passes through the first through hole and the second through hole in sequence.
[0010] Furthermore, the blocking component also includes: an elastic component, at least a portion of which is sleeved on the rotating shaft, a first elastic support of the elastic component being connected to the first body, and a second elastic support of the elastic component being connected to the second body, so that the first body and the second body are in the blocking position by the elastic force of the elastic component.
[0011] Furthermore, the integrated stove also includes a drive component, which is driven to a rotating shaft to drive the rotating shaft to rotate, thereby causing the rotating shaft to rotate the first body and / or the second body.
[0012] Furthermore, mounting holes are provided on the inner wall of the smoke exhaust duct and / or the inner wall of the air exhaust duct, and at least a portion of the rotating shaft is inserted into the mounting holes.
[0013] Furthermore, the multiple air outlet channels include: a first air outlet channel, which is set on the first side panel of the cabinet so that airflow is blown out on the first side of the stove through the first air outlet channel; and a second air outlet channel, which is set on the second side panel of the cabinet so that airflow is blown out on the second side of the stove through the second air outlet channel.
[0014] Furthermore, the cabinet is provided with an air inlet, and the air blowing assembly also includes: a first heat exchanger installed inside the cabinet, at least a portion of the first heat exchanger being opposite to the air inlet; a first fan component installed inside the cabinet and located to the side of the first heat exchanger; a first ventilation duct installed inside the cabinet, the air inlet of the first ventilation duct being opposite to the first fan component, so that airflow is introduced into the first ventilation duct through the first fan component, and the air outlet of the first ventilation duct being connected to the first air outlet channel.
[0015] Furthermore, the blower assembly also includes: a second ventilation duct, which is installed inside the cabinet, with the air inlet of the second ventilation duct connected to the first ventilation duct and the air outlet of the second ventilation duct connected to the second air outlet channel.
[0016] Furthermore, the blower assembly also includes: a second heat exchanger disposed within the cabinet; a second fan component installed within the cabinet and located to the side of the second heat exchanger, at least a portion of the second fan component being opposite to the second heat exchanger; and the air outlet of the second fan component being connected to the exhaust duct.
[0017] According to the technical solution of this invention, the integrated stove includes a cabinet, a cooktop, a smoke exhaust duct, and a blocking component. The cooktop is installed on the cabinet. At least a portion of the blower assembly is installed inside the cabinet. The blower assembly includes multiple air outlet ducts and exhaust ducts, which are spaced apart on the cabinet and located to the side of the cooktop. The smoke exhaust duct is located inside the cabinet and communicates with the exhaust duct, and is used to exhaust fumes. The blocking component is located within the smoke exhaust duct and / or the exhaust duct, and has a blocking position and a clearance position. The blocking component is movably arranged between the blocking position and the clearance position to block or clear the smoke exhaust duct and / or the exhaust duct. By providing multiple air outlet ducts to the side of the cooktop, an air curtain can be formed to the side of the cooktop, preventing the fumes generated by the cooktop from escaping. At the same time, by providing the blocking component, the opening or closing of the smoke exhaust duct and / or the exhaust duct can be controlled, preventing airflow within the smoke exhaust duct and the exhaust duct from flowing between each other. Attached Figure Description
[0018] The accompanying drawings, which form part of this application, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an undue limitation of the invention. In the drawings:
[0019] Figure 1 A structural schematic diagram of an embodiment of the integrated stove according to the present invention is shown;
[0020] Figure 2 A first state diagram of the blocking component of the integrated stove according to the present invention is shown;
[0021] Figure 3 A second state diagram of the blocking component of the integrated stove according to the present invention is shown;
[0022] Figure 4 A first-view structural schematic diagram of an embodiment of the blocking component of an integrated stove according to the present invention is shown;
[0023] Figure 5 A second-view structural schematic diagram of an embodiment of the blocking component of an integrated stove according to the present invention is shown;
[0024] Figure 6 A first-view structural schematic diagram of the integrated stove according to the present invention is shown;
[0025] Figure 7 A second-view structural schematic diagram of the integrated stove according to the present invention is shown;
[0026] Figure 8 A third-view structural schematic diagram of the integrated stove according to the present invention is shown; and
[0027] Figure 9 A diagram showing the usage state of the integrated stove according to the present invention is provided.
[0028] The above figures include the following reference numerals:
[0029] 1. Cabinet; 2. Work area; 3. Stove; 4. Blower assembly; 401. Exhaust duct; 41. First exhaust duct; 42. Second exhaust duct; 11. First mounting body; 12. Second mounting body; 5. Smoke extraction duct; 120. Connecting body; 121. Protruding body; 13. Air inlet; 43. First heat exchanger; 44. First fan assembly; 45. First ventilation duct; 46. Second ventilation duct; 6. Smoke exhaust duct; 47. Second heat exchanger; 48. Second fan assembly; 49. First air guide assembly; 40. Second air guide assembly; 7. Smoke extraction fan; 8. Compressor assembly;
[0030] 9. Blocking component; 91. First body; 92. Second body; 93. Rotating shaft; 910. First connecting plate; 920. Second connecting plate; 94. Elastic component. Detailed Implementation
[0031] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0032] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0033] This invention provides an integrated stove; please refer to [the relevant documentation]. Figures 1 to 9 The appliance includes: a cabinet 1; a cooktop 3 mounted on the cabinet 1; a blower assembly 4, at least a portion of which is installed inside the cabinet 1, the blower assembly 4 including multiple air outlet channels and exhaust channels 401, the multiple air outlet channels being spaced apart on the cabinet 1 and located to the side of the cooktop 3; a smoke exhaust channel 6, disposed inside the cabinet 1 and communicating with the exhaust channels 401, the smoke exhaust channel 6 being used to exhaust fumes; and a blocking member 9, disposed inside the smoke exhaust channel 6 and / or the exhaust channels 401, the blocking member 9 having a blocking position and a yielding position, the blocking member 9 being movably disposed between the blocking position and the yielding position to block or yield to the smoke exhaust channel 6 and / or the exhaust channels 401.
[0034] An integrated stove according to the present invention includes a cabinet 1, a cooktop 3, a smoke exhaust duct 6, and a blocking component 9. The cooktop 3 is mounted on the cabinet 1. At least a portion of a blower assembly 4 is mounted inside the cabinet 1. The blower assembly 4 includes multiple air outlet ducts and exhaust ducts 401. The multiple air outlet ducts are spaced apart on the cabinet 1 and located to the side of the cooktop 3. The smoke exhaust duct 6 is disposed inside the cabinet 1 and communicates with the exhaust ducts 401. The smoke exhaust duct 6 is used to exhaust fumes. The blocking component 9 is disposed inside the smoke exhaust duct 6 and / or the exhaust duct 401. The blocking component 9 has a blocking position and a yielding position. The blocking component 9 is movably disposed between the blocking position and the yielding position to block or yield the smoke exhaust duct 6 and / or the exhaust duct 401. By setting multiple air outlet channels on the side of the stove 3, an air curtain can be formed on the side of the stove to prevent the oil fumes generated by the stove 3 from escaping. At the same time, by setting the blocking component 9, the opening or closing of the smoke exhaust channel 6 and / or the ventilation channel 401 can be controlled to prevent the airflow in the smoke exhaust channel 6 and the ventilation channel 401 from flowing between each other.
[0035] Specifically, the blocking member 9 is rotatably disposed along a predetermined axis, and at least a portion of the outer peripheral surface of the blocking member 9 is in contact with the inner wall surface of the smoke exhaust duct 6 and / or the inner wall surface of the exhaust duct 401. This arrangement increases the sealing between the blocking member 9 and the inner wall surface of the smoke exhaust duct 6 and / or the inner wall surface of the exhaust duct 401 when the blocking member 9 is in the blocking position, preventing external airflow from flowing into the smoke exhaust duct 6 and / or the exhaust duct 401.
[0036] In the embodiments provided by the present invention, such as Figure 2 and Figure 3 As shown, the blocking component 9 includes: a first body 91; and a second body 92. The first body 91 and the second body 92 are connected and rotatably disposed relative to each other. By rotating the first body 91 and / or the second body 92, the first body 91 and / or the second body 92 are placed in a clearance position, thereby ensuring that the smoke exhaust duct 6 and / or the air exhaust duct 401 are open.
[0037] In the specific implementation process, in order to facilitate the installation of the first body 91 and the second body 92, the blocking component 9 also includes: a rotating shaft 93, the first body 91 and the second body 92 are connected by the rotating shaft 93, and the first body 91 and / or the second body 92 are rotatably arranged around the rotating shaft 93.
[0038] Specifically, a first connecting plate 910 is provided on the first body 91, the first end of the first connecting plate 910 is connected to the first body 91, the second end of the first connecting plate 910 extends in a direction away from the first body 91, and a first through hole is provided on the first connecting plate 910; a second connecting plate 920 is provided on the second body 92, the first end of the second connecting plate 920 is connected to the second body 92, the second end of the second connecting plate 920 extends in a direction away from the second body 92; a second through hole is provided on the second connecting plate 920, the first through hole and the second through hole are opposite to each other, and at least a portion of the rotating shaft 93 passes through the first through hole and the second through hole in sequence. This arrangement avoids interference between the first body 91 and the second body 92 during rotation. Furthermore, by setting the first connecting plate 910 and the second connecting plate 920, the first body 91 and the second body 92 are staggered, ensuring that the outer circumferential surfaces of both the first body 91 and the second body 92 are in contact with the inner wall of the smoke exhaust channel 6 and / or the air exhaust channel 401. This prevents gaps between the first body 91 and the second body 92 and further improves the sealing performance between the blocking component 9 and the inner wall of the smoke exhaust channel 6 and / or the air exhaust channel 401.
[0039] The blocking component 9 further includes an elastic component 94, at least a portion of which is sleeved on the rotating shaft 93. A first elastic support of the elastic component 94 is connected to the first body 91, and a second elastic support of the elastic component 94 is connected to the second body 92, so that the elastic force of the elastic component 94 keeps the first body 91 and the second body 92 in a blocking position. Preferably, the elastic component 94 is a torsion spring, and its elastic restoring force drives the first body 91 and the second body 92 to move towards the blocking position, causing the blocking position to automatically return from the avoidance position to the blocking position.
[0040] To facilitate the rotation of the first body 91 and / or the second body 92, the integrated stove further includes a driving component, which is drivenly connected to the rotating shaft 93 to drive the rotating shaft 93 to rotate, thereby causing the rotating shaft 93 to drive the first body 91 and / or the second body 92 to rotate. Preferably, the driving component is a drive motor, which overcomes the elastic restoring force of the elastic member 94 to rotate the first body 91 and / or the second body 92.
[0041] In another embodiment of the present invention, the rotation of the first body 91 and the second body 92 can also utilize the airflow in the smoke exhaust channel 6 and / or the ventilation channel 401 to push the first body 91 and / or the second body 92 open, so that the smoke exhaust channel 6 and / or the ventilation channel 401 are in a conductive state.
[0042] Preferably, the inner wall of the smoke exhaust duct 6 and / or the inner wall of the air exhaust duct 401 are provided with mounting holes, and at least a portion of the rotating shaft 93 is inserted into the mounting holes.
[0043] In the embodiments provided by the present invention, the plurality of air outlet channels include: a first air outlet channel 41, disposed on the first side panel of the cabinet 1, so that airflow is blown out on the first side of the stove 3 through the first air outlet channel 41; and a second air outlet channel 42, disposed on the second side panel of the cabinet 1, so that airflow is blown out on the second side of the stove 3 through the second air outlet channel 42. Preferably, the first air outlet channel 41 is located between the stove 3 and the user, creating an air curtain between the stove and the user to prevent oil fumes from falling on the user's clothing.
[0044] The cabinet 1 is provided with an air inlet 13. The air blowing assembly 4 further includes: a first heat exchanger 43, installed inside the cabinet 1, with at least a portion of the first heat exchanger 43 facing the air inlet 13; a first fan component 44, installed inside the cabinet 1 and located to the side of the first heat exchanger 43; and a first ventilation duct 45, located inside the cabinet 1, with the air inlet of the first ventilation duct 45 facing the first fan component 44, so that airflow is introduced into the first ventilation duct 45 through the first fan component 44, and the air outlet of the first ventilation duct 45 is connected to the first air outlet channel 41. Specifically, the first heat exchanger 43 exchanges heat with the airflow drawn in through the air inlet 13, so that the airflow blown out through the first air outlet channel 41 can achieve cooling or heating according to user needs, thereby improving the efficiency of the integrated stove.
[0045] The blower assembly 4 also includes a second ventilation duct 46, which is installed inside the cabinet 1. The air inlet of the second ventilation duct 46 is connected to the first ventilation duct 45, and the air outlet of the second ventilation duct 46 is connected to the second air outlet channel 42. This arrangement allows part of the airflow flowing into the first ventilation duct 45 to pass through the first heat exchanger 43 and then be blown out through the first air outlet channel 41, while the other part flows into the second ventilation duct 46 and is blown out through the second air outlet channel 42. This simplifies the structure of the cabinet 1 by requiring only one air inlet 13.
[0046] The air blowing assembly 4 further includes: a second heat exchanger 47, disposed within the cabinet 1; a second fan component 48, installed within the cabinet 1 and located to the side of the second heat exchanger 47, with at least a portion of the second fan component 48 opposite to the second heat exchanger 47; and an air outlet of the second fan component 48 connected to an exhaust duct 401. The second heat exchanger 47 is connected to the first heat exchanger 43, and the refrigerant within the first heat exchanger 43 is processed through the second heat exchanger 47. Preferably, the air blowing assembly 4 further includes a compressor component 8, which is connected to the second heat exchanger 47. The second heat exchanger 47 is a condenser, and the first heat exchanger 43 is an evaporator. The compressor component 8 is connected to the first heat exchanger via a first pipe and a second pipe. The first fan component 44 is a cross-flow fan, and the second fan component is an axial flow fan. By installing the evaporator and condenser within the cabinet 1, the integrated stove can blow cold or hot air to meet the user's needs. Among them, the exhaust duct 401 is a channel that communicates with the volute of the first fan component 44, so as to discharge the airflow flowing through the condenser together with the airflow in the smoke exhaust duct 6.
[0047] In the embodiments provided by the present invention, to facilitate adjustment of the blowing angle, the multiple air outlet channels include a first air outlet channel 41 and a second air outlet channel 42; the blowing assembly 4 further includes a first air guide component 49, disposed within the first air outlet channel 41, the first air guide component 49 being rotatably disposed around a first predetermined axis, and the first air guide component 49 having a first air guide end face. Preferably, there are multiple first air guide components 49, which are spaced apart along the width direction of the first air outlet channel 41, and the first air guide component 49 is a first air guide plate.
[0048] Furthermore, the plurality of air outlet channels include a first air outlet channel 41 and a second air outlet channel 42; the blowing assembly 4 further includes a second air guide component 40, disposed within the second air outlet channel 42, the second air guide component 40 being rotatably disposed about a second predetermined axis, and the second air guide component 40 having a second air guide end face. Preferably, there are multiple second air guide components 40, which are spaced apart along the width direction of the second air outlet channel 42 to adjust the angle of the airflow blown out from the second air outlet channel 42.
[0049] The cabinet 1 includes: a first mounting body 11, with a first air outlet duct 41 disposed on the first mounting body 11; and a second mounting body 12, disposed on and connected to the first mounting body 11, extending away from the first mounting body 11. A working area 2 is located between the first mounting body 11 and the second mounting body 12, with the stove 3 installed within the working area 2. The second air outlet duct 42 is disposed on the second mounting body 12. This arrangement allows airflow to be blown out through the first air outlet duct 41 in a first direction toward the first side of the stove, and through the second air outlet duct 42 in a second direction toward the second side of the stove, forming an air curtain on both the first and second sides of the stove 3 to prevent the spread of cooking fumes. Preferably, the first air outlet duct 41 is located on the panel of the cabinet 1 facing the user, and the air curtain formed by the airflow through the first air outlet duct 41 is located between the user and the stove, thus preventing cooking fumes from escaping to the user's operating area and improving user comfort.
[0050] In the embodiments provided by the present invention, the second mounting body 12 includes: a connecting body 120 disposed on the first mounting body 11; and a protruding body 121 disposed at the end of the connecting body 120 away from the first mounting body 11, extending towards the center of the working area 2; the connecting body 120 and the protruding body 121 are connected by an arc-shaped connecting plate, at least a portion of the smoke extraction channel 5 is disposed on the arc-shaped connecting plate, and the second air outlet channel 42 is disposed on the protruding body 121. By disposing of the smoke extraction channel 5 on the arc-shaped connecting plate, the distance between the smoke extraction channel and the stove 3 is reduced, thus decreasing the path of oil fume diffusion. Simultaneously, by disposing of the second air outlet channel 42 on the protruding body 121, the airflow outlet is positioned closer to the center of the working area 2 than the air inlet of the smoke extraction channel 5. Thus, the protruding body 121 blocks the oil fume, and the airflow from the second air outlet channel 42 blocks the escaping oil fume; the combined effect of these two mechanisms improves the integrated stove's ability to prevent oil fume diffusion.
[0051] In practical implementation, the integrated stove also includes a smoke extraction fan 7, which is installed inside the cabinet 1 and connected to the smoke extraction channel 5. The second ventilation duct 46 is set on the side of the smoke extraction channel 5. This makes the structural layout of each part of the integrated stove more compact, saves installation space, and reduces the size of the integrated stove.
[0052] In the integrated stove provided by the invention, by integrating the heat exchange system of the air conditioner into the integrated stove, the functionality of the integrated stove is increased. The integrated stove can not only have the functions of cooking, fume extraction and cooling / heating, but also form an air curtain in the working area of the integrated stove by using the airflow blown out by the heat exchange system to block the spread of oil fumes in the working area, thereby further improving the user experience.
[0053] As can be seen from the above description, the embodiments of the present invention achieve the following technical effects:
[0054] An integrated stove according to the present invention includes a cabinet 1, a cooktop 3, a smoke exhaust duct 6, and a blocking component 9. The cooktop 3 is mounted on the cabinet 1. At least a portion of a blower assembly 4 is mounted inside the cabinet 1. The blower assembly 4 includes multiple air outlet ducts and exhaust ducts 401. The multiple air outlet ducts are spaced apart on the cabinet 1 and located to the side of the cooktop 3. The smoke exhaust duct 6 is disposed inside the cabinet 1 and communicates with the exhaust ducts 401. The smoke exhaust duct 6 is used to exhaust fumes. The blocking component 9 is disposed inside the smoke exhaust duct 6 and / or the exhaust duct 401. The blocking component 9 has a blocking position and a yielding position. The blocking component 9 is movably disposed between the blocking position and the yielding position to block or yield the smoke exhaust duct 6 and / or the exhaust duct 401. By setting multiple air outlet channels on the side of the stove 3, an air curtain can be formed on the side of the stove to prevent the oil fumes generated by the stove 3 from escaping. At the same time, by setting the blocking component 9, the opening or closing of the smoke exhaust channel 6 and / or the ventilation channel 401 can be controlled to prevent the airflow in the smoke exhaust channel 6 and the ventilation channel 401 from flowing between each other.
[0055] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented, for example, in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0056] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.
[0057] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. An integrated stove, characterized in that, include: Cabinet (1); The stove (3) is installed on the cabinet (1); A blower assembly (4), at least a portion of which is installed inside the cabinet (1), the blower assembly (4) includes an exhaust duct (401) and a plurality of air outlet ducts, the plurality of air outlet ducts being spaced apart on the cabinet (1) and located on the side of the stove (3); A smoke exhaust duct (6) is installed inside the cabinet (1) and connected to the exhaust duct (401). The smoke exhaust duct (6) is used to exhaust oil fumes. A blocking component (9) is disposed within the smoke exhaust duct (6) and / or the air exhaust duct (401). The blocking component (9) has a blocking position and a yielding position. The blocking component (9) is movably disposed between the blocking position and the yielding position to block or yield the smoke exhaust duct (6) and / or the air exhaust duct (401). The plurality of air outlet channels include: a first air outlet channel (41), which is disposed on the first side panel of the cabinet (1) so that airflow passes through the first air outlet channel (41) and blows out airflow on the first side of the stove (3); and a second air outlet channel (42), which is disposed on the second side panel of the cabinet (1) so that airflow passes through the second air outlet channel (42) and blows out airflow on the second side of the stove (3). The blower assembly (4) further includes: a first air guide component (49) disposed in the first air outlet channel (41), the first air guide component (49) being rotatably disposed around a first predetermined axis, the first air guide component (49) having a first air guide end face; there are multiple first air guide components (49), the multiple first air guide components (49) being spaced apart along the width direction of the first air outlet channel (41), the first air guide component (49) being a first air guide plate; The blowing assembly (4) further includes: a second air guide component (40) disposed in the second air outlet channel (42), the second air guide component (40) being rotatably disposed around a second predetermined axis, the second air guide component (40) having a second air guide end face; there are multiple second air guide components (40), and multiple second air guide components (40) are spaced apart along the width direction of the second air outlet channel (42) to adjust the angle of the airflow blown out by the second air outlet channel (42).
2. The integrated stove according to claim 1, characterized in that, The blocking member (9) is rotatably disposed along a predetermined axis, and at least a portion of the outer peripheral surface of the blocking member (9) is in contact with the inner wall surface of the smoke exhaust channel (6) and / or the inner wall surface of the air exhaust channel (401).
3. The integrated stove according to claim 1, characterized in that, The blocking component (9) includes: First ontology (91); The second body (92) is connected to the first body (91) and the second body (92), and the first body (91) and the second body (92) are rotatably arranged relative to each other.
4. The integrated stove according to claim 3, characterized in that, The blocking component (9) further includes: A rotating shaft (93) is provided, through which the first body (91) and the second body (92) are connected, and the first body (91) and / or the second body (92) are rotatably arranged about the rotating shaft (93).
5. The integrated stove according to claim 4, characterized in that, The first body (91) is provided with a first connecting plate (910), the first end of the first connecting plate (910) is connected to the first body (91), the second end of the first connecting plate (910) extends in a direction away from the first body (91), and the first connecting plate (910) is provided with a first through hole; The second body (92) is provided with a second connecting plate (920), the first end of the second connecting plate (920) is connected to the second body (92), and the second end of the second connecting plate (920) extends in a direction away from the second body (92); the second connecting plate (920) is provided with a second through hole, the first through hole is opposite to the second through hole, and at least a portion of the rotating shaft (93) passes through the first through hole and the second through hole in sequence.
6. The integrated stove according to claim 5, characterized in that, The blocking component (9) further includes: An elastic component (94) is provided, at least a portion of which is sleeved on the rotating shaft (93). The first elastic support of the elastic component (94) is connected to the first body (91), and the second elastic support of the elastic component (94) is connected to the second body (92), so that the first body (91) and the second body (92) are in a blocking position by the elastic force of the elastic component (94).
7. The integrated stove according to claim 5, characterized in that, The integrated stove also includes: A driving component is driven to the rotating shaft (93) to drive the rotating shaft (93) to rotate, so that the rotating shaft (93) drives the first body (91) and / or the second body (92) to rotate.
8. The integrated stove according to claim 4, characterized in that, The inner wall of the smoke exhaust channel (6) and / or the inner wall of the air exhaust channel (401) are provided with mounting holes, and at least a portion of the rotating shaft (93) is inserted into the mounting holes.
9. The integrated stove according to claim 1, characterized in that, The cabinet (1) is provided with an air inlet (13), and the blower assembly (4) further includes: A first heat exchanger (43) is installed inside the cabinet (1), and at least a portion of the first heat exchanger (43) is opposite to the air inlet (13); The first fan component (44) is installed inside the cabinet (1) and located to the side of the first heat exchanger (43); The first ventilation duct (45) is installed inside the cabinet (1). The air inlet of the first ventilation duct (45) is opposite to the first fan component (44) so that airflow is introduced into the first ventilation duct (45) through the first fan component (44). The air outlet of the first ventilation duct (45) is connected to the first air outlet channel (41).
10. The integrated stove according to claim 9, characterized in that, The blowing assembly (4) also includes: The second ventilation duct (46) is installed inside the cabinet (1). The air inlet of the second ventilation duct (46) is connected to the first ventilation duct (45), and the air outlet of the second ventilation duct (46) is connected to the second air outlet channel (42).
11. The integrated stove according to claim 9, characterized in that, The blowing assembly (4) also includes: The second heat exchanger (47) is installed inside the cabinet (1); The second fan component (48) is installed inside the cabinet (1) and located to the side of the second heat exchanger (47), with at least a portion of the second fan component (48) opposite to the second heat exchanger (47); The air outlet of the second fan component (48) is connected to the exhaust channel (401).
Citation Information
Patent Citations
Intake / exhaust channel of integrated stove
CN107166465A
Air conditioner type integrated stove system
CN111237947A
Integrated cooker
CN214198818U