Gas guiding structure of the hot box of the integrated stove

Through the integrated stove heat box gas conduction structure, the gas conduction assembly and the gas conduction hose are used to discharge the gas upwards, making it easier to be sucked away by the exhaust device, solving the problems of scalds and exhaust gas reflux in the prior art, and achieving a safer and cleaner exhaust effect.

CN111637506BActive Publication Date: 2025-06-13GUANGDONG VANWARD ELECTRIC
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Patent Information

Application Number
CN202010536002.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-06-12
Publication Date
2025-06-13
Estimated Expiration
2040-06-12

AI Technical Summary

Technical Problem

The exhaust methods of existing integrated stoves or stoves pose risks of burns and waste gas return pollution.

Method used

The integrated stove heat box air conduction structure is adopted, including the stove, air intake assembly, air supply mechanism, air conduction assembly and air conduction hose. Through the design of the air conduction assembly and air conduction hose, the gas is discharged upward, making it easier to be sucked away by the exhaust device and reducing the risk of scald and exhaust gas return.

Benefits of technology

It effectively improves the problems of scalds and exhaust gas return, improves the safety and cleanliness of exhaust gas, and reduces the requirements for assembly accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a gas guiding structure for a hot box of an integrated stove, comprising: a cooking range, an air intake assembly, a air supply mechanism, a gas guiding assembly and a gas guiding hose. The air intake assembly includes an air intake box, and an air intake port, an air outlet and an air inlet that are interconnected are provided on the air intake box; the air supply mechanism has an air outlet, the air outlet is communicated with the air inlet, and the air outlet is arranged facing the air outlet; the gas guiding assembly is connected to the cooking range, the gas guiding assembly has a gas guiding outlet and a gas guiding inlet that are interconnected, and the gas guiding outlet is arranged upward; the gas guiding hose communicates the air outlet with the gas guiding inlet. The gas is discharged upward through the gas guiding outlet of the gas guiding assembly, which is beneficial to be sucked away by an exhaust device externally provided on the cooking range, so that the problems of scalding and waste gas backflow can be effectively improved. In addition, the setting of the gas guiding hose makes the connection between the gas guiding outlet and the exhaust port more flexible, reducing the requirement for assembly accuracy.
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Description

Technical Field

[0001] The present invention relates to the field of kitchen and bathroom, and particularly to an air guiding structure for a hot box of an integrated stove. Background Art

[0002] Existing integrated stoves or cookers on the market are equipped with a hot box, such as a steaming box, an oven, etc. There are two exhaust methods for such integrated stoves or cookers. One is to cool the air through a blower and discharge the gas forward through the exhaust passage and out through the door gap. The disadvantage of this exhaust method is that if a person stands near the exhaust passage, the discharged gas will directly blow onto the human body, causing the clothes to get damp and even posing a risk of high-temperature burns. The other is to directly discharge the gas into the common flue through an exhaust hose. The disadvantage of this exhaust method is that there is a risk that the waste gas in the common flue will flow back into the cavity and pollute the cavity. Summary of the Invention

[0003] The present invention aims to solve at least one of the technical problems existing in the prior art.

[0004] The present invention provides an air guiding structure for a hot box of an integrated stove, including: a cooking range, an air intake assembly, a air supply mechanism, an air guiding assembly, and an air guiding hose. The air intake assembly includes an air intake box, and the air intake box is provided with an air intake port, an air outlet, and an air inlet that are interconnected. The air supply mechanism has an air outlet, the air outlet is communicated with the air inlet, and the air outlet is arranged towards the air outlet. The air guiding assembly is connected to the cooking range, the air guiding assembly has an air guiding outlet and an air guiding inlet that are interconnected, and the air guiding outlet is arranged upwards. The air guiding hose communicates the air outlet with the air guiding inlet.

[0005] In one embodiment, the air guiding assembly includes: an air guiding cavity and a diversion box. The air guiding inlet is arranged at the lower part of the air guiding cavity, and an exhaust port is arranged at the upper part of the air guiding cavity. The exhaust port is communicated with the air guiding inlet. The diversion box is connected to the air guiding cavity. The air guiding outlet is opened on the diversion box and arranged upwards. The diversion box has a diversion inlet, the diversion inlet covers the exhaust port and is communicated with the exhaust port, and the diversion inlet is opened at a position above the bottom surface of the diversion box. The diversion box covers the exhaust port, so that the steam discharged from the exhaust port can change its direction through the diversion inlet and the air guiding outlet. After passing through the air guiding outlet, the steam tends to be discharged upwards, which is beneficial to be sucked away by an external air extraction device arranged on the cooking range, reducing the possibility that the steam discharge affects the flame combustion. In addition, the steam entering from the diversion inlet is condensed when it encounters the diversion box. Since the diversion inlet is arranged at a position above the bottom surface of the diversion box, the condensed water can be stored in the diversion box, reducing the accumulation of condensed water on the cooking range.

[0006] In one embodiment, the exhaust port is arranged downward, the diversion inlet and the air guide outlet are both formed on the upper side of the diversion box, and the diversion box is connected below the exhaust port. By arranging the diversion inlet and the air guide outlet on the upper side of the diversion box, it is beneficial to increase the water storage capacity of the diversion box.

[0007] In one embodiment, the diversion inlet and the air guide outlet are integrally arranged. The integral arrangement of the diversion inlet and the air guide outlet means that the diversion inlet and the air guide outlet are the same opening structure formed on the diversion box. Through the above arrangement, the structure of the diversion box can be effectively simplified, and the manufacturing difficulty of the diversion box can be reduced.

[0008] In one embodiment, taking the direction from the center of the cooking range to the air guide cavity as the rear, a recessed portion is formed on the front side of the air guide cavity. The recessed portion is recessed backward, the exhaust port is formed on the upper side surface of the recessed portion, the diversion box is installed at the recessed portion, the front side of the diversion box extends forward to the front of the recessed portion, the air guide inlet is opened on the air guide cavity, and the air guide inlet is communicated with both the air guide cavity and the exhaust port. Through the above arrangement, on the one hand, the connection between the exhaust port and the diversion inlet can be simply realized, and on the other hand, the diversion box arranged in the recessed portion is beneficial to improving the integrity of the diversion box and the air guide cavity.

[0009] In one embodiment, the air guide assembly includes: a back plate, an upper baffle, a lower baffle, a middle baffle, and a front panel;

[0010] The back plate is connected to the cooking range, and the back plate is located at the rear side of the cooking range;

[0011] The upper baffle includes a first top plate, a first side plate, and a second side plate. The first side plate is connected to the left side of the first top plate and extends downward, and the second side plate is connected to the right side of the first top plate and extends downward. The rear sides of the first top plate, the first side plate, and the second side plate are all in contact with the back plate;

[0012] The lower baffle includes a first bottom plate, a third side plate, and a fourth side plate. The third side plate is connected to the left side of the first bottom plate and extends upward, and the fourth side plate is connected to the right side of the first top plate and extends upward. The rear sides of the first bottom plate, the third side plate, and the fourth side plate are all in contact with the back plate. The first side plate and the third side plate are in contact, the second side plate and the fourth side plate are in contact, and the air guide inlet is formed on the first bottom plate;

[0013] The middle baffle is located between the upper baffle and the lower baffle and connects the front sides of the upper baffle and the lower baffle. The recessed part is formed on the front side of the middle baffle. The upper side of the middle baffle abuts against the front part of the upper baffle. The diversion box is fixedly connected to the middle baffle. The lower side of the middle baffle abuts against the front part of the lower baffle.

[0014] The front panel is located on the front side of the upper baffle. The rear side of the front panel abuts against both the middle baffle and the upper baffle. The front panel, the upper baffle, the middle baffle and the lower baffle jointly form an air guiding cavity.

[0015] A back panel is provided to reduce the chance of oil on the stove flowing out or penetrating into the wall. By configuring the upper baffle, the lower baffle, the middle baffle and the front panel, an air guiding cavity is jointly formed with the back panel. On the premise of limited space, the distance of the air guiding cavity in the front-back direction is relatively large, which is beneficial to increasing the internal space of the air guiding cavity and enhancing the flow-through capacity of the air guiding cavity.

[0016] In one embodiment, the middle baffle is a profile member. The middle baffle extends in the left-right direction. A first vertical plate and a second vertical plate are respectively provided on the left side and the right side of the stove. The left end and the right end of the middle baffle are respectively connected to the first vertical plate and the second vertical plate. The middle baffle is a profile member, and its two ends are respectively connected to the first vertical plate and the second vertical plate provided on both sides of the stove, which is beneficial to improving the integrity of the middle baffle and the stove and enhancing the strength of the middle baffle.

[0017] In one embodiment, a card slot is provided on the top surface of the diversion box. The lower part of the front panel extends into the card slot. By providing the card slot, it is beneficial to position the diversion box through the front panel and is more convenient for the assembly of the diversion box.

[0018] In one embodiment, the diversion box is detachably connected to the middle baffle. By setting the diversion box to be detachably connected, it is convenient to remove the diversion box and pour out the condensed water in the diversion box.

[0019] In one embodiment, a third vertical plate extending outward is provided on the side surface of the diversion box. A first through hole is provided across the third vertical plate. Correspondingly, a second through hole is provided on the middle baffle. A screw is provided at the second through hole. The screw passes through the first through hole to press the diversion box against the middle baffle. Through the above settings, the diversion box is detachably connected by means of screw connection, which has the advantage of convenient connection.

[0020] The air guiding structure of the integrated range hood hot box provided by the present invention has the following beneficial effects: During use, a peripherally provided hot box, such as an oven, a steamer box, or a disinfection cabinet, etc., which is a box body with a heating function, is fixedly connected to the cooking range. The air inlet is communicated with the exhaust port on the hot box. The air supply mechanism is started to blow the gas in the hot box towards the air outlet, and it leads to the air guiding inlet through the air guiding hose. The gas is discharged upward through the air guiding outlet of the air guiding component, which is conducive to being sucked away by the exhaust device peripherally provided on the cooking range, thereby effectively improving the problems of scalding and waste gas backflow. In addition, the setting of the air guiding hose makes the connection between the air guiding outlet and the exhaust port more flexible, reducing the requirement for assembly accuracy.

[0021] Additional aspects and advantages of the present invention will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present invention. Brief Description of the Drawings

[0022] The above and / or additional aspects and advantages of the present invention will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0023] Figure 1 It is a right view structure schematic diagram of an embodiment of the present invention, and the arrow in the figure indicates the flow direction of the gas;

[0024] Figure 2 It is a rear view perspective view of the present invention;

[0025] Figure 3 It is an assembly structure schematic diagram of the air guiding component, and the arrow in the figure indicates the flow direction of the gas;

[0026] Figure 4 It is a cross-sectional view of the air guiding component.

[0027] In the drawings: 100 - cooking range;

[0028] 200 - air inlet box; 210 - air outlet;

[0029] 300 - air supply mechanism;

[0030] 400 - air guiding component; 410 - back plate; 420 - upper baffle; 430 - lower baffle; 431 - air guiding inlet; 440 - middle baffle; 441 - recessed part; 442 - notch; 450 - front panel; 460 - diversion box; 461 - diversion inlet; 462 - air guiding outlet; 463 - clamping groove;

[0031] 500 - air guiding hose. Detailed Description of the Embodiments

[0032] Embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where like or similar reference numerals denote like or similar elements or elements having like or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary only for explaining the present invention and should not be construed as limiting the present invention.

[0033] In the description of the present invention, it should be understood that with respect to the orientation description, such as the orientation or positional relationship indicated by up, down, front, back, left, right, etc., is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present invention.

[0034] In the description of the present invention, the meaning of "several" is an indefinite quantity, the meaning of "multiple" is more than two, and understandings such as "greater than", "less than", "exceeding", etc. do not include the present number, and understandings such as "above", "below", "within", etc. include the present number. If there is a description of "first" and "second", it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence relationship of the indicated technical features. In addition, the "and / or" appearing throughout the text represents three parallel solutions. For example, A and / or B represents the solution satisfied by A, the solution satisfied by B, or the solution satisfied by both A and B.

[0035] In the description of the present invention, for a short sentence containing multiple parallel features, the attributive modifies the closest feature. For example: B, C provided on A, E connected to D means that B is provided on A, E is connected to D, and C is not restricted; however, for attributives indicating the relationship between features, such as "spaced apart" and "annular arrangement", etc., this does not belong to this category. If the attributive is preceded by the word "all", it means that all features in the short sentence are restricted. For example, B, C, D all provided on A means that B, C, and D are all provided on A.

[0036] In the description of the present invention, unless otherwise clearly defined, words such as "set", "installed", "connected", etc. should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meaning of the above words in the present invention in combination with the specific content of the technical solution.

[0037] Refer to Figures 1 to 4, embodiments of the air guiding structure of the hot box of the integrated stove are provided, including: a stove top 100, an air intake assembly, a air supply mechanism 300, an air guiding assembly 400 and an air guiding hose 500. The air intake assembly includes an air intake box 200, and the air intake box 200 is provided with an air intake port, an air outlet 210 and an air inlet that are communicated with each other; the air supply mechanism 300 has an air outlet, the air outlet is communicated with the air inlet, and the air outlet is arranged towards the air outlet 210; the air guiding assembly 400 is connected to the stove top 100, and the air guiding assembly 400 has an air guiding outlet 462 and an air guiding inlet 431 that are communicated with each other, and the air guiding outlet 462 is arranged upwards; the air guiding hose 500 communicates the air outlet 210 with the air guiding inlet 431.

[0038] During use, a peripheral hot box, such as an oven, a steamer or a disinfection cabinet and other boxes with heating functions, is fixedly connected to the stove top 100, usually fixedly connected below the stove top 100. The air intake port is communicated with the exhaust port on the hot box. The air supply mechanism 300 is started to blow the gas in the hot box towards the air outlet 210, and the gas passes through the air guiding hose 500 to the air guiding inlet 431. The gas is discharged upwards through the air guiding outlet 462 of the air guiding assembly 400, which is beneficial to being sucked away by the air extraction device installed on the stove top 100, so as to effectively improve the problems of scalding and waste gas backflow. In addition, the setting of the air guiding hose 500 makes the connection between the air guiding outlet 462 and the exhaust port more flexible, reducing the requirement for assembly accuracy.

[0039] In this embodiment, the air supply mechanism 300 is a blower and the air supply mechanism 300 is fixed together with the air intake box 200. In other embodiments, the air supply mechanism 300 can also be an axial flow fan, a centrifugal fan, a wind wheel, etc. The air supply mechanism 300 can also be connected to one or more of the components such as the stove top 100 and the hot box. Since the hot box is installed below the stove top 100 in this embodiment, the air intake box 200 and the air supply mechanism 300 are also installed below the stove top 100 to simplify the installation structure. In other embodiments, the installation positions of the air intake box 200 and the air supply mechanism 300 can also be flexibly arranged according to needs. For example, the air intake box 200 is arranged on the top surface of the stove top 100, outside the stove top 100, etc., and the air supply mechanism 300 is arranged above the stove top 100, outside the stove top 100, etc., and the air supply mechanism 300, the air intake box 200 and the hot box are connected through pipelines.

[0040] Specifically, the air guiding assembly 400 includes an air guiding cavity and a diversion box 460. The air guiding inlet 431 is arranged at the lower part of the air guiding cavity. An exhaust port is arranged at the upper part of the air guiding cavity, and the exhaust port is communicated with the air guiding inlet 431. The diversion box 460 is connected to the air guiding cavity. The air guiding outlet 462 is formed on the diversion box 460 and is arranged upward. The diversion box 460 has a diversion inlet 461, and the diversion inlet 461 covers the exhaust port and is communicated with the exhaust port. The diversion inlet 461 is arranged at a position above the bottom surface of the diversion box 460. The diversion box 460 is arranged to cover the exhaust port, so that the steam discharged from the exhaust port can change its direction through the diversion inlet 461 and the air guiding outlet 462. After passing through the air guiding outlet 462, the steam tends to be discharged upward, which is beneficial to be sucked away by an external exhaust device arranged on the cooking range 100, reducing the possibility that the discharged steam affects the flame combustion. In addition, the steam entering from the diversion inlet 461 is condensed when it encounters the diversion box 460. Since the diversion inlet 461 is arranged at a position above the bottom surface of the diversion box 460, the condensed water can be stored in the diversion box 460, reducing the accumulation of condensed water on the cooking range 100.

[0041] In this embodiment, the diversion box 460 is arranged at the rear side of the cooking range 100, and the air guiding outlet 462 is arranged upward. The steam in the hot box is sucked away by an external exhaust device also located at the rear side after being discharged from the air guiding outlet 462, which can prevent the steam from flowing through the middle part of the cooking range 100 and avoid affecting the vision above the cooking range 100. The exhaust device is usually an exhaust hood.

[0042] Specifically, the exhaust port is arranged downward, the diversion inlet 461 and the air guiding outlet 462 are both formed on the upper side of the diversion box 460, and the diversion box 460 is connected below the exhaust port. By arranging the diversion inlet 461 and the air guiding outlet 462 on the upper side of the diversion box 460, it is beneficial to increase the water storage capacity of the diversion box 460.

[0043] Furthermore, the diversion inlet 461 and the air guiding outlet 462 are integrally arranged. The integral arrangement of the diversion inlet 461 and the air guiding outlet 462 means that the diversion inlet 461 and the air guiding outlet 462 are the same opening structure formed on the diversion box 460. When the diversion box 460 is formed by injection molding or by bending, the integrally arranged diversion inlet 461 and air guiding outlet 462 can effectively simplify the structure of the diversion box 460 and reduce the manufacturing difficulty of the diversion box 460.

[0044] Specifically, taking the direction from the center of the cooking range 100 pointing to the air guide cavity as the rear, a recess 441 is formed on the front side of the air guide cavity. The recess 441 is recessed towards the rear, the exhaust port is formed on the upper side of the recess 441, the diversion box 460 is installed at the recess 441, the front side of the diversion box 460 extends forward of the recess 441, the air guide inlet 431 is opened on the air guide cavity, and the air guide inlet 431 is communicated with both the air guide cavity and the exhaust port. Through the above settings, on the one hand, the communication between the exhaust port and the diversion inlet 461 can be simply achieved; on the other hand, the diversion box 460 is arranged in the recess 441, which is beneficial to improving the integrity of the diversion box 460 and the air guide cavity and reducing the space occupied by the diversion box 460 on the cooking range 100 tabletop.

[0045] Specifically, the air guide assembly 400 includes: a back plate 410, an upper baffle 420, a lower baffle 430, a middle baffle 440, and a front panel 450;

[0046] The back plate 410 is connected to the cooking range 100, and the back plate 410 is located at the rear side of the cooking range 100;

[0047] The upper baffle 420 includes a first top plate, a first side plate, and a second side plate. The first side plate is connected to the left side of the first top plate and extends downward, the second side plate is connected to the right side of the first top plate and extends downward, and the rear sides of the first top plate, the first side plate, and the second side plate are all in contact with the back plate 410;

[0048] The lower baffle 430 includes a first bottom plate, a third side plate, and a fourth side plate. The third side plate is connected to the left side of the first bottom plate and extends upward, the fourth side plate is connected to the right side of the first top plate and extends upward, the rear sides of the first bottom plate, the third side plate, and the fourth side plate are all in contact with the back plate 410, the first side plate and the third side plate are in contact, the second side plate and the fourth side plate are in contact, and the air guide inlet 431 is formed on the first bottom plate;

[0049] The middle baffle 440 is located between the upper baffle 420 and the lower baffle 430 and connects the front sides of the upper baffle 420 and the lower baffle 430. The recess 441 is formed on the front side of the middle baffle 440. The upper side of the middle baffle 440 is in contact with the front part of the upper baffle 420. The diversion box 460 is fixedly connected to the middle baffle 440. The lower side of the middle baffle 440 is in contact with the front part of the lower baffle 430;

[0050] The front panel 450 is located on the front side of the upper baffle 420. The rear side of the front panel 450 abuts against both the middle baffle 440 and the upper baffle 420. The front panel 450, the upper baffle 420, the middle baffle 440, and the lower baffle 430 together form an air guide cavity. Specifically, the exhaust port is formed by the front panel 450 and a notch 442 provided on the front side of the middle baffle 440.

[0051] A back panel 410 is provided to reduce the chance of oil on the stove 100 flowing outwards or penetrating into the wall surface. By configuring the upper baffle 420, the lower baffle 430, the middle baffle 440, and the front panel 450, an air guide cavity is jointly formed with the back panel 410. On the premise of limited space, the distance of the air guide cavity in the front-rear direction is relatively large, which is beneficial to increasing the internal space of the air guide cavity and enhancing the flow-through capacity of the air guide cavity.

[0052] In this embodiment, the first top plate, the first side plate, and the second side plate included in the upper baffle 420 are integrally bent and formed. The first bottom plate, the third side plate, and the fourth side plate included in the lower baffle 430 are integrally bent and formed. In other embodiments, integral bending and forming can also be replaced by welding, injection molding, or other methods. In this embodiment, first connecting ears are formed on the front and rear side edges of the upper baffle 420 by bending, and fourth through holes are provided on the first connecting ears to be connected to the back panel 410 or the front panel 450 by screws. Second connecting ears are formed on the rear side edge of the lower baffle 430 by bending, and fifth through holes are provided on the second connecting ears to be connected to the back panel 410 by bolts. In other embodiments, the upper baffle 420 and the lower baffle 430 can also be connected to the stove 100, or other connection methods such as welding, clamping, riveting, etc. can be adopted. In this embodiment, the front panel 450 is a glass panel to improve the overall appearance and cleanliness. The front panel 450 is connected to the middle baffle 440 by gluing. In other embodiments, the front panel 450 can also be made of a metal plate, a plastic plate, a wooden plate, or other materials, and the connection of the front panel 450 can also adopt common connection methods such as clamping and screw connection.

[0053] Specifically, the middle baffle 440 is a profile member that extends in the left-right direction. A first vertical plate and a second vertical plate are respectively provided on the left and right sides of the cooking range 100, and the left end and the right end of the middle baffle 440 are respectively connected to the first vertical plate and the second vertical plate. The middle baffle 440 being a profile member and its two ends being respectively connected to the first vertical plate and the second vertical plate provided on both sides of the cooking range 100 is conducive to improving the integrity of the middle baffle 440 and the cooking range 100 and enhancing the strength of the middle baffle 440. When the middle baffle 440 is a profile member, the recessed portion 441 is continuous along the length direction of the middle baffle 440 on the middle baffle 440, and the exhaust port is partially formed on the upper side surface of the recessed portion 441; the position of the exhaust port is formed in the middle of the recessed portion 441 in this embodiment.

[0054] Further, a card slot 463 is provided on the top surface of the flow guide box 460, and the lower part of the front panel 450 extends into the card slot 463. By providing the card slot 463, it is conducive to positioning the flow guide box 460 through the front panel 450, making the assembly of the flow guide box 460 more convenient.

[0055] Further, the flow guide box 460 is detachably connected to the middle baffle 440. By setting the flow guide box 460 to be detachably connected, it is convenient to remove the flow guide box 460 and pour out the condensed water in the flow guide box 460.

[0056] Specifically, a third vertical plate that protrudes outward is provided on the side surface of the flow guide box 460, a first through hole that runs across is provided on the third vertical plate. Correspondingly, a second through hole is provided on the middle baffle 440, and a screw is provided at the second through hole. The screw passes through the first through hole to press the flow guide box 460 against the middle baffle 440. Through the above settings, the flow guide box 460 realizes detachable connection in a screw connection manner, which has the advantage of convenient connection. In other embodiments, the flow guide box 460 can also realize detachable connection in common ways such as snap connection and magnetic attraction.

[0057] The above has specifically described the preferred embodiments of the present invention, but the present invention is not limited to the above embodiments. Those skilled in the art can also make various equivalent variations or substitutions without departing from the spirit of the present invention, and these equivalent variations or substitutions are all included within the scope defined by the claims of the present invention.

Claims

1. Gas guiding structure for the hot box of an integrated stove, Characterized in that: It includes: A cooking range (100); An air intake assembly, the air intake assembly includes an air intake box (200), and the air intake box (200) is provided with an air intake port, an air outlet (210) and an air inlet that are communicated with each other; A air supply mechanism (300), the air supply mechanism (300) has an air outlet, the air outlet is communicated with the air inlet, the air outlet is arranged towards the air outlet (210), and both the air intake box (200) and the air supply mechanism (300) are installed below the cooking range (100); A gas guiding assembly (400), the gas guiding assembly (400) is connected to the cooking range (100), the gas guiding assembly (400) has a gas guiding outlet (462) and a gas guiding inlet (431) that are communicated with each other, the gas guiding outlet (462) is arranged upwards, and the gas guiding assembly (400) includes: A gas guiding cavity, the gas guiding inlet (431) is arranged at the lower part of the gas guiding cavity, an exhaust port is arranged at the upper part of the gas guiding cavity, and the exhaust port is communicated with the gas guiding inlet (431); A diversion box (460), the diversion box (460) is connected to the gas guiding cavity, the gas guiding outlet (462) is opened on the diversion box (460) and is arranged upwards, the diversion box (460) has a diversion inlet (461), the diversion inlet (461) covers the exhaust port and is communicated with the exhaust port, and the diversion inlet (461) is opened at a position above the bottom surface of the diversion box (460); A gas guiding hose (500), the gas guiding hose (500) communicates the air outlet (210) with the gas guiding inlet (431).

2. The gas guiding structure for the hot box of an integrated stove according to claim 1, Characterized in that: The exhaust port is arranged downwards, both the diversion inlet (461) and the gas guiding outlet (462) are formed on the upper side of the diversion box (460), and the diversion box (460) is connected below the exhaust port.

3. The gas guiding structure for the hot box of an integrated stove according to claim 2, Characterized in that: The diversion inlet (461) and the gas guiding outlet (462) are integrally arranged.

4. The gas guiding structure for the hot box of an integrated stove according to claim 2, Characterized in that: Taking the direction from the center of the cooking range (100) to the gas guiding cavity as the rear, a concave portion (441) is formed on the front side of the gas guiding cavity, the concave portion (441) is recessed towards the rear, the exhaust port is formed on the upper side surface of the concave portion (441), the diversion box (460) is installed at the concave portion (441), the front side of the diversion box (460) extends to the front of the concave portion (441), the gas guiding inlet (431) is opened on the gas guiding cavity, and the gas guiding inlet (431), the gas guiding cavity and the exhaust port are all communicated.

5. The gas guiding structure for the hot box of an integrated stove according to claim 4, Characterized in that: The gas guiding assembly (400) includes: Back panel (410), the back panel (410) is connected to the cooking range (100), and the back panel (410) is located at the rear side of the cooking range (100); Upper baffle (420), the upper baffle (420) includes a first top plate, a first side plate and a second side plate. The first side plate is connected to the left side of the first top plate and extends downward. The second side plate is connected to the right side of the first top plate and extends downward. The rear sides of the first top plate, the first side plate and the second side plate are all in contact with the back panel (410); Lower baffle (430), the lower baffle (430) includes a first bottom plate, a third side plate and a fourth side plate. The third side plate is connected to the left side of the first bottom plate and extends upward. The fourth side plate is connected to the right side of the first top plate and extends upward. The rear sides of the first bottom plate, the third side plate and the fourth side plate are all in contact with the back panel (410). The first side plate and the third side plate are in contact. The second side plate and the fourth side plate are in contact. The air inlet (431) is formed on the first bottom plate; Middle baffle (440), the middle baffle (440) is located between the upper baffle (420) and the lower baffle (430) and connects the front sides of the upper baffle (420) and the lower baffle (430). The recessed part (441) is formed on the front side of the middle baffle (440). The upper side of the middle baffle (440) is in contact with the front part of the upper baffle (420). The flow guide box (460) is fixedly connected to the middle baffle (440). The lower side of the middle baffle (440) is in contact with the front part of the lower baffle (430); Front panel (450), the front panel (450) is located at the front side of the upper baffle (420). The rear side of the front panel (450) is in contact with both the middle baffle (440) and the upper baffle (420). The front panel (450), the upper baffle (420), the middle baffle (440) and the lower baffle (430) together form an air guide cavity.

6. The air guide structure of the integrated cooking range hot box according to claim 5, characterized in that: The middle baffle (440) is a profile member. The middle baffle (440) extends in the left-right direction. A first vertical plate and a second vertical plate are respectively provided on the left side and the right side of the cooking range (100). The left end and the right end of the middle baffle (440) are respectively connected to the first vertical plate and the second vertical plate.

7. The air guide structure of the integrated cooking range hot box according to claim 5, characterized in that: A clamping groove (463) is provided on the top surface of the flow guide box (460). The lower part of the front panel (450) extends into the clamping groove (463).

8. The air guide structure of the integrated cooking range hot box according to claim 5, characterized in that: The flow guide box (460) is detachably connected to the middle baffle (440).

9. The air guide structure of the integrated cooking range hot box according to claim 8, characterized in that: A third vertical plate extending outward is provided on the side surface of the diversion box (460). A first through hole is provided across the third vertical plate. Correspondingly, a second through hole is provided on the middle blocking member (440). A screw is provided at the second through hole. The screw passes through the first through hole to press the diversion box (460) tightly against the middle blocking member (440).

Citation Information

Patent Citations

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    CN210399023U

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