Cooking equipment

By installing a guide channel on the door of the cooking equipment, the liquid is diverted to the side of the door, solving the problem of liquid entering the equipment and improving the lifespan of electrical components and the reliability of the equipment.

CN223463945UActive Publication Date: 2025-10-24ZHUHAI UNICOOK TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422536922.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-10-24
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

When conventional cooking equipment is cleaned with a water gun or sprayed with water, liquid can easily flow into the interior of the equipment through the gap between the door and the base, damaging internal electrical components.

Method used

A flow guide channel is installed on the door to direct the liquid to one side of the door, reducing the possibility of liquid entering the containment chamber. The design of the flow guide channel and the tilting of the door ensure that the liquid flows out along the side wall.

Benefits of technology

It effectively reduces the risk of liquid entering the containment chamber, and improves the lifespan of electrical components and the overall reliability of the cooking equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses cooking equipment, and belongs to the technical field of kitchen equipment. The cooking equipment comprises a base assembly, a heating assembly and a control assembly, the door body is movably connected with the base assembly so as to open or close the accommodating cabin; a flow guide groove is formed in the door body so that liquid can be guided to at least one side of the door body. Therefore, when a user directly performs spray washing operation on the cooking equipment by using a water gun or in a water sprinkling manner, the possibility that liquid flows into the accommodating cabin through the gap between the door body and the accommodating cabin can be reduced, and the service life of electric appliance elements or other elements in the accommodating cabin can be prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to kitchen equipment technical field especially to a kind of cooking equipment. BACKGROUND

[0002] Current cooking equipment, user will use water gun, or splash water to the equipment directly to spray wash operation, so, there is the problem that water flows into equipment interior between the gap of door body and base. UTILITY MODEL CONTENTS

[0003] Therefore, the utility model provides a kind of cooking equipment, by being provided with flow guide groove on door body, liquid can be drained to at least one side of door body by flow guide groove, when user uses water gun, or splash water to the cooking equipment directly to spray wash operation, it can reduce the problem that liquid flows into containing cabin interior between the gap of door body and containing cabin, it is favorable to improve the service life of electric element or other element in containing cabin.

[0004] The embodiment of the utility model provides a kind of cooking equipment, comprising: base assembly, base assembly has containing cabin;Door body, door body and base assembly are movably connected to open or close containing cabin;Wherein, door body is provided with flow guide groove to drain liquid to at least one side of door body.

[0005] Further, the slot of flow guide groove is upward, flow guide groove includes a plurality of oppositely arranged first side walls, at least one of the plurality of first side walls is inclinedly arranged from top to bottom to the direction close to another first side wall.

[0006] Further, the first side wall includes first sub-side wall and second sub-side wall, first sub-side wall is closer to containing cabin than second sub-side wall, the top of first sub-side wall is protruded from the top of second sub-side wall, or the top of second sub-side wall at least partially overlaps with base assembly.

[0007] Further, the end of first sub-side wall is at least partially bent away from containing cabin.

[0008] Further, flow guide groove further includes second side wall, second side wall is located in the side adjacent to the plurality of first side walls, and second side wall and the plurality of first side walls form one-side opening flow guide groove;The opening direction of flow guide groove is opposite to containing cabin.

[0009] Further, the groove bottom of flow guide groove is inclinedly arranged relative to horizontal plane;And / or, door body is inclinedly arranged relative to horizontal plane.

[0010] Further, the cooking equipment further includes: movable connecting piece corresponding to door body, the first end of movable connecting piece is connected with the inner wall of door body, and the second end of movable connecting piece is connected with base assembly;

[0011] The accommodating cabin is provided with a mounting opening, and the door body is used for opening or closing the mounting opening.

[0012] Further, the cooking device further comprises a partition plate, the partition plate is located in the interior of the accommodating cabin to separate the accommodating cabin into a first chamber and a second chamber, the first chamber is used for at least accommodating a liquid pipeline of the cooking device, and the second chamber is used for at least accommodating an electrical element of the cooking device.

[0013] Further, upper and lower ends of the partition plate are connected with a top wall and a bottom wall of the accommodating cabin respectively, and the partition plate is provided with a bending structure along a front-rear direction.

[0014] Further, a utensil of the cooking device is located at one side of the partition plate, and / or the partition plate comprises one plate provided with a bending structure, or the partition plate comprises at least two flat plates connected in sequence, and at least one group of adjacent two flat plates is provided in an inclined manner.

[0015] Further, the cooking device further comprises a heat dissipation assembly, and at least part of the heat dissipation assembly is provided in a suspended manner on the base assembly.

[0016] The cooking device provided by the utility model, comprising: base assembly and door body, the base assembly has an accommodating cabin, the door body is movably connected with the base assembly to open or close the accommodating cabin, by setting the flow guide groove on the door body, the flow guide groove can guide the liquid to at least one side of the door body, when the user uses the water gun or the water spraying mode to directly spray and wash the cooking device, part of the liquid will flow to at least one side of the door body under the guidance of the flow guide groove on the door body, thereby, the possibility that the liquid flows into the interior of the accommodating cabin through the gap between the door body and the accommodating cabin can be reduced, the service life of the electrical element or other element in the accommodating cabin is improved, and the overall reliability of the cooking device is improved, so the utility model is suitable for widely applied.

[0017] The above description is only a summary of the technical scheme of the application, in order to more clearly understand the technical means of the application, the specific embodiments of the application can be implemented according to the content of the specification, and in order to make the above and other purposes, characteristics and advantages of the application more obvious and easy to understand, the following specific embodiments of the application are described. BRIEF DESCRIPTION OF DRAWINGS

[0018] Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The accompanying drawings are included to provide a description of the preferred embodiments and are not meant to limit the present application. Moreover, the same reference numerals in the different drawings indicate the same or similar elements. Among them:

[0019] Figure 1A structure schematic view of one perspective of the cooking equipment provided by one embodiment of the utility model shows;

[0020] Figure 2 A structure schematic view of one perspective of the cooking equipment provided by one embodiment of the utility model shows Figure 1 A partial enlarged view of A of the shown embodiment shows;

[0021] Figure 3 A structure schematic view of another perspective of the cooking equipment provided by one embodiment of the utility model shows;

[0022] Figure 4 A structure schematic view of another perspective of the cooking equipment provided by one embodiment of the utility model shows Figure 3 A partial enlarged view of B of the shown embodiment shows;

[0023] Figure 5 A structure schematic view of another perspective of the cooking equipment provided by one embodiment of the utility model shows;

[0024] Figure 6 A structure schematic view of another perspective of the cooking equipment provided by one embodiment of the utility model shows Figure 5 A partial enlarged view of C of the shown embodiment shows;

[0025] Figure 7 A structure schematic view of another perspective of the cooking equipment provided by one embodiment of the utility model shows Figure 5 A partial enlarged view of D of the shown embodiment shows;

[0026] Figure 8 A structure schematic view of another perspective of the cooking equipment provided by one embodiment of the utility model shows;

[0027] Figure 9 A structure schematic view of another perspective of the cooking equipment provided by one embodiment of the utility model shows Figure 8 A partial enlarged view of E of the shown embodiment shows.

[0028] Wherein, Figures 1 to 9 The correspondence between the reference signs and the component names in the drawings is as follows:

[0029] 100 cooking equipment, 110 base assembly, 111 containing cabin, 112 mounting port, 113 first cavity, 114 second cavity, 115 bottom wall, 116 rear wall, 120 door body, 121 protection along, 122 left door, 123 right door, 130 flow guide groove, 131 slot, 132 first side wall, 1321 first sub side wall, 1322 second sub side wall, 133 second side wall, 134 opening, 135 groove bottom, 140 movable connecting piece, 150 partition plate, 151 bending structure, 160 connecting joint, 170 sealing element, 180 liquid pipeline, 190 electrical element, 200 utensil. DETAILED DESCRIPTION

[0030] In order to more clearly understand the above purpose, features and advantages of the present application, the present application will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0031] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, however, the present application can also be implemented in other ways different from those described herein, therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.

[0032] The following refers to Figures 1 to 9 The cooking equipment 100 provided according to some embodiments of the present application is described. Among them, the cooking equipment 100 can be an intelligent frying machine, or other kitchen equipment.

[0033] As Figure 1 , Figure 3 , Figure 5 Embodiments of the present application provide a cooking equipment 100, which comprises a base assembly 110, the base assembly 110 has a containing cabin 111; a door body 120, the door body 120 is movably connected with the base assembly 110 to open or close the containing cabin 111; wherein the door body 120 is provided with a flow guide groove 130 to guide the liquid to at least one side of the door body 120.

[0034] The cooking equipment 100 provided by the embodiments of the present application comprises a base assembly 110 and a door body 120, the base assembly 110 has a containing cabin 111, it can be understood that at least part of the elements of the cooking equipment 100 can be installed inside the containing cabin 111 of the base assembly 110, such as electrical elements 190 or other elements installed in the containing cabin 111, etc., to shield and protect the electrical elements 190 or other elements by using the containing cabin 111, improve the neatness of the appearance of the cooking equipment 100, and the reliability of the electrical elements 190 or other elements. Among them, the door body 120 is movably connected with the base assembly 110 to open or close the containing cabin 111, so that when the door body 120 opens the containing cabin 111, it is convenient for the electrical elements 190 or other elements to be assembled or maintained through the part of the containing cabin 111 opened by the door body 120, and when the door body 120 closes the containing cabin 111, the electrical elements 190 can be relatively sealed in the containing cabin 111, so as to shield and protect the electrical elements 190 or other elements by using the containing cabin 111, and improve the neatness of the appearance of the cooking equipment 100.

[0035] As Figure 2 and Figure 4As shown, in this embodiment, by arranging the flow guide groove 130 on the door body 120, the flow guide groove 130 can guide the liquid to at least one side of the door body 120. When the user uses the water gun or the water splashing method to directly spray and wash the cooking equipment 100, part of the liquid will flow to at least one side of the door body 120 under the guidance of the flow guide groove 130 on the door body 120. Therefore, the possibility of the liquid flowing into the accommodation cabin 111 through the gap between the door body 120 and the accommodation cabin 111 can be reduced, and the possibility of the liquid flowing into the accommodation cabin 111 to damage the electrical elements 190 or other elements in the accommodation cabin 111 can be reduced. This is beneficial to prolong the service life of the electrical elements 190 or other elements in the accommodation cabin 111, and further improve the overall reliability of the cooking equipment 100, which is suitable for popularization and application.

[0036] It should be understood that the at least one side of the door body 120 can be a side wall of the door body 120 perpendicular to or inclined to the horizontal plane. In this way, after the flow guide groove 130 guides the liquid to at least one side of the door body 120, the liquid directly flows out of the flow guide groove 130 under the action of gravity, or flows downward along the side wall of the door body 120 perpendicular to or inclined to the horizontal plane, so as to reduce or avoid the possibility of the liquid flowing into the accommodation cabin 111 through the gap between the door body 120 and the accommodation cabin 111.

[0037] Specifically, as shown in Figure 3 and Figure 5 , the side wall of the door body 120 perpendicular to or inclined to the horizontal plane can be the left and right two side walls of the door body 120. The flow guide groove 130 can guide the liquid to one side wall of the door body 120, such as the left side wall or the right side wall, or the flow guide groove 130 can guide the liquid to both side walls of the door body 120, such as the left side wall and the right side wall. Figure 1 、 Figure 3 、 Figure 6 、 Figure 8 indicated by the arrow y.

[0038] As shown in Figure 3 and Figure 4 , the flow guide groove 130 can be located at the top end of the door body 120, or can be located at the middle or other positions of the door body 120.

[0039] As shown in Figure 8As shown, the accommodating cabin 111 can be provided with a mounting opening 112, and the door body 120 is movably connected to the base assembly 110 to open or close the mounting opening 112 of the accommodating cabin 111. The mounting opening 112 is configured to allow the electrical element 190 or other elements to be put into or taken out of the accommodating cabin 111 through the mounting opening 112, thereby facilitating the disassembly and assembly of the electrical element 190 or other elements and the base assembly 110, and facilitating the assembly and maintenance.

[0040] As shown, the door body 120 can be movably connected to the base assembly 110 by at least one of a hinged structure, a pivoting structure, a rotating structure, and a translating structure to open or close the mounting opening 112 of the accommodating cabin 111.

[0041] As shown in Figure 2 and Figure 4 In some possible embodiments of the present application, the slot opening 131 of the flow guide groove 130 faces upward, and the upward-facing slot opening 131 of the flow guide groove 130 has a good bearing effect on the liquid flowing from above the flow guide groove 130 to the flow guide groove 130. Therefore, in the case of directly spraying the device with a water gun or by splashing water, the liquid flows from top to bottom along the base assembly 110, flows into the flow guide groove 130 through the slot opening 131 of the flow guide groove 130, and flows to at least one side of the door body 120 under the guidance of the flow guide groove, thereby reducing or avoiding the problem of liquid flowing into the accommodating cabin 111 through the gap between the door body 120 and the accommodating cabin 111.

[0042] As shown in Figure 2 and Figure 4 In some possible embodiments of the present application, the flow guide groove 130 includes a plurality of oppositely arranged first side walls 132, and at least one of the plurality of first side walls 132 is inclined from top to bottom to the direction of the other first side wall 132.

[0043] In some embodiments, the number of first side walls 132 is a plurality, and the plurality of first side walls 132 enclose the flow guide groove 130.

[0044] In some embodiments, the number of first side walls 132 is a plurality, and the plurality of first side walls 132 are arranged in pairs. For example, the first side wall 132 can be two, i.e., the first side wall 132 can be a pair, and at this time the door body 120 can be a single-door door body structure. Alternatively, the first side wall 132 can be four, i.e., the first side wall 132 can be two pairs, and at this time the door body 120 can be a double-door door body structure. It can be understood that the first side wall 132 can also be of other quantities to meet the needs of different structures of the door body 120.

[0045] In this embodiment, among the multiple relatively arranged first side walls 132, at least one first side wall 132 is arranged to be inclined toward the interior of the guide groove 130 in the direction from the notch 131 to the groove bottom 135. This arrangement enables the inclined first side wall 132 to have a good guiding effect on the liquid, so that the liquid can flow smoothly into the interior of the guide groove 130 through the inclined first side wall 132 and the notch 131, thereby realizing the drainage effect.

[0046] Furthermore, the guide groove 130 is formed by one of the plurality of first side walls 132 being tilted from top to bottom toward the other first side wall 132 opposite thereto. Alternatively, two, three, or another number of the plurality of first side walls 132 may be tilted from top to bottom toward the other first side wall 132 opposite thereto. Alternatively, two first side walls 132 opposite thereto among the plurality of first side walls 132 may both be tilted from top to bottom toward the other first side wall 132.

[0047] Among them, the first side wall 132 is inclined from the top to the bottom in the direction close to the other first side wall 132 arranged opposite to it, and can be at least one of a plane inclination, an arc-shaped inclination, and a step-shaped inclination. Specifically, the two first side walls 132 arranged opposite to each other can be of the same structure or different structures. For example, the two first side walls 132 can both be plane-inclined, so that the cross-section of the guide groove 130 along the vertical direction is roughly triangular, or the two first side walls 132 can both be arc-shaped, so that the cross-section of the guide groove 130 along the vertical direction is roughly arc-shaped. It is understandable that the cross-section of the guide groove 130 along the vertical direction can also be other shapes, which are not listed one by one in the present utility model. Among them, the vertical direction can be as shown in the figure Figure 1 、 Figure 3 、 Figure 5 、 Figure 8 As shown by the arrow Z in .

[0048] like Figure 2 、 Figure 6 As shown, in some possible embodiments provided by the present invention, the first side wall 132 includes a first sub-side wall 1321 and a second sub-side wall 1322 that are relatively arranged, the first sub-side wall 1321 is closer to the accommodating chamber 111 than the second sub-side wall 1322, and the top of the first sub-side wall 1321 protrudes from the top of the second sub-side wall 1322.

[0049] That is, the two first side walls 132 arranged oppositely are distributed oppositely in the direction of approaching and moving away from the containing cabin 111, and the first sub-side wall 1321 is closer to the containing cabin 111 than the second sub-side wall 1322, that is, the first sub-side wall 1321 is located on the side of the second sub-side wall 1322 close to the inside of the containing cabin 111, and the second sub-side wall 1322 is located on the side of the first sub-side wall 1321 away from the inside of the containing cabin 111.

[0050] In the embodiment, the top of the first sub-side wall 1321 protrudes from the top of the second sub-side wall 1322, that is, in the vertical direction, the top of the first sub-side wall 1321 is located above the top of the second sub-side wall 1322, so that the first sub-side wall 1321 has a good shielding effect on the liquid in the flow guide groove 130. Thus, when the liquid in the flow guide groove 130 is high and overflows, because the top of the first sub-side wall 1321 is located above the top of the second sub-side wall 1322, the liquid in the flow guide groove 130 will overflow over the top of the second sub-side wall 1322 and flow away from the containing cabin 111. Therefore, the problem of the liquid in the flow guide groove 130 flowing into the inside of the containing cabin 111 through the gap between the door body 120 and the base assembly 110 can be reduced or avoided, and the reliability of the electrical components 190 and other components in the containing cabin 111 is improved. That is, in the embodiment, the first side wall 132 is surrounded by a plurality of sub-side walls to form the flow guide groove 130 having at least one opening.

[0051] In some possible implementation embodiments of the utility model, the top of the second sub-side wall 1322 at least partially overlaps the base assembly 110.

[0052] In the embodiment, the part of the top of the second sub-side wall 1322 overlapping the base assembly 110 has a good shielding and drainage effect on water, which can reduce the possibility of water entering the inside of the base assembly 110 through the gap between the door body 120 and the base assembly 110, and has a good waterproof effect. At the same time, because the flow guide groove 130 is further arranged on the door body 120 to drain water to at least one side of the door body 120, the part of the top of the second sub-side wall 1322 overlapping the base assembly 110 cooperates with the flow guide groove 130 to have a double waterproof effect, which can further reduce or avoid the possibility of water entering the inside of the base assembly 110 through the gap between the door body 120 and the base assembly 110, and is beneficial to improve the service life of the electrical components or other components in the containing cabin.

[0053] The top of the second sub-side wall 1322 at least partially overlaps with the base assembly 110, which can be that a part of the top of the second sub-side wall 1322 overlaps with the base assembly 110, another part of the top of the second sub-side wall 1322 does not overlap with the base assembly 110, or the top of the second sub-side wall 1322 entirely overlaps with the base assembly 110.

[0054] In some possible implementation examples provided by the utility model, the end of the first sub-side wall 1321 is at least partially bent away from the containing cabin 111, and at least partially adheres to the base assembly 110.

[0055] The end of the first side wall 132 bent in this way has a good shielding and drainage effect on the liquid in the flow guide groove 130, so that the slot 131 of the flow guide groove 130 can be inclined away from the containing cabin 111, and the liquid in the flow guide groove 130 can be further guided away from the containing cabin 111, thereby reducing or avoiding the problem that the liquid in the flow guide groove 130 flows into the containing cabin 111 through the gap between the door body 120 and the base assembly 110.

[0056] Specifically, the end of the first sub-side wall 1321 is at least partially bent away from the containing cabin 111, which can be that the end of the first sub-side wall 1321 located at the top is bent away from the containing cabin 111, that is, the top of the first sub-side wall 1321 is bent away from the containing cabin 111. Alternatively, the left end and / or the right end of the first sub-side wall 1321 can be bent away from the containing cabin 111. Alternatively, the end of the first sub-side wall 1321 located at the top is bent away from the containing cabin 111, and the left end and / or the right end of the first sub-side wall 1321 is bent away from the containing cabin 111.

[0057] When the top of the first sub-side wall 1321 is bent away from the containing cabin 111, since the top of the first sub-side wall 1321 also protrudes from the top of the second sub-side wall 1322, if the base assembly 110 shakes and the liquid in the flow guide groove 130 exceeds the top of the second sub-side wall 1322 and flows to the top of the first sub-side wall 1321, since the top of the first sub-side wall 1321 is bent away from the containing cabin 111, the liquid can be drained away from the containing cabin 111, thereby reducing or avoiding the problem that the liquid in the flow guide groove 130 overflows and flows into the containing cabin 111 through the gap between the door body 120 and the base assembly 110.

[0058] When the left end and / or the right end of the first sub-side wall 1321 is / are bent in a direction away from the containing cabin 111, the inclination of the left end and / or the right end of the flow guide groove 130 in a direction away from the containing cabin 111 can guide the liquid in a direction away from the containing cabin 111, and reduce or avoid the problem that the liquid in the flow guide groove 130 with a high height overflows and flows into the containing cabin 111 through the gap between the door body 120 and the base assembly 110.

[0059] As shown in some possible embodiments provided by the utility model, the flow guide groove 130 further comprises a second side wall 133, the second side wall 133 is located at one side adjacent to the plurality of first side walls 132, and the second side wall 133 and the plurality of first side walls 132 enclose the flow guide groove 130 with the one-side opening 134. Figure 4 That is, the flow guide groove 130 can guide the liquid to one side of the door body 120, and the liquid in the flow guide groove 130 is discharged from the flow guide groove 130 through the one-side opening 134 of the flow guide groove 130 or flows down along the side wall of the door body 120.

[0060] In some embodiments, the second side wall 133 can be located at one side adjacent to two first side walls 132 oppositely arranged in the plurality of first side walls 132, so as to enclose the flow guide groove 130 with the one-side opening 134 by the second side wall 133 and the pair of oppositely arranged first side walls 132.

[0061] It can be understood that when the number of the first side walls 132 is two, that is, the door body 120 is a single-door structure, the number of the second side walls 133 can be one, and the second side wall 133 is connected to one side adjacent to the two first side walls 132, so as to enclose the flow guide groove 130 with the one-side opening 134 by the second side wall 133 and the pair of oppositely arranged first side walls 132.

[0062] Figure 4 ​As shown, when the number of the first side walls 132 is four, that is, the door body 120 is a double-door structure, the number of the second side walls 133 is two, and the two second side walls 133 are respectively connected to the adjacent side of the two first side walls 132 arranged oppositely, so as to form a single-side opening 134 of the flow guide groove 130 at the top of each door body 120. It can be understood that the base assembly 110 comprises an outer wall perpendicular to the plane where the mounting port 112 is located, and the opening 134 of the flow guide groove 130 and the containing cabin 111 are located on both sides of one outer wall of the base assembly 110, and the opening 134 of the flow guide groove 130 is located on the side of the outer wall away from the containing cabin 111. This arrangement makes the liquid in the flow guide groove 130 flow out in the direction away from the containing cabin 111 under the guidance of the flow guide groove 130 through the opening 134 away from the containing cabin 111, which can further reduce or avoid the problem that the liquid in the flow guide groove 130 flows into the containing cabin 111 through the gap between the door body 120 and the base assembly 110. In some possible embodiments provided by the present application, the groove bottom 135 of the flow guide groove 130 is arranged to be inclined relative to the horizontal plane, specifically, the groove bottom 135 of the flow guide groove 130 is arranged to be inclined downward from the direction away from the opening 134 to the direction close to the opening 134, so that the groove bottom 135 of the flow guide groove 130 has a good drainage effect on the liquid, so that the liquid in the flow guide groove 130 can be quickly and more completely drained under the drainage of the inclined groove bottom 135, so as to improve the drainage efficiency and completeness of the flow guide groove 130, avoid the problem that the liquid is left in the flow guide groove 130 due to incomplete drainage of the flow guide groove 130, and damage or corrode the door body 120, and improve the reliability and service life of the door body 120.

[0063] Specifically, the angle at which the groove bottom 135 of the flow guide groove 130 is arranged to be inclined relative to the horizontal plane is greater than 0 degree and less than 0.5 degree. By reasonably setting the angle at which the groove bottom 135 of the flow guide groove 130 is arranged to be inclined relative to the horizontal plane, the flow guide groove 130 has good drainage efficiency and completeness, and at the same time, the structure of the door body 120 is less changed and will not affect the original layout of other components, such as the position of the movable connecting piece 140 mentioned below.

[0064] Specifically, the angle at which the groove bottom 135 of the flow guide groove 130 is arranged to be inclined relative to the horizontal plane can be 0.05 degrees, 0.1 degrees, 0.2 degrees, 0.3 degrees, 0.4 degrees, 0.49 degrees, or other angles, etc.

[0065] As Figure 7As shown, in some other possible embodiments of the utility model, the door body 120 is arranged obliquely relative to the horizontal plane. It can be understood that the bottom of the door body 120 is arranged obliquely relative to the horizontal plane. Since the flow guide groove 130 is located on the door body 120, if the flow guide groove 130 is located at the top end or other position of the door body 120, by arranging the door body 120 obliquely relative to the horizontal plane, the groove bottom 135 of the flow guide groove 130 is arranged obliquely relative to the horizontal plane, specifically, the groove bottom 135 of the flow guide groove 130 is arranged obliquely downward from the direction away from the opening 134 to the direction close to the opening 134, thereby making the groove bottom 135 of the flow guide groove 130 have a good drainage effect on the liquid, so that the liquid in the flow guide groove 130 can be quickly and more completely drained under the drainage of the obliquely arranged groove bottom 135, to improve the drainage efficiency and completeness of the flow guide groove 130, avoid the problem that the liquid is not completely drained in the flow guide groove 130 and remains in the flow guide groove 130 to damage and corrode the door body 120, and improve the reliability and service life of the door body 120.

[0066] Specifically, the angle at which the door body 120 is arranged obliquely relative to the horizontal plane can be as shown by the included angle a between the plane where the bottom of the door body 120 is located and the horizontal plane in Figure 7 , wherein a is greater than 0 degrees and less than 0.5 degrees. By reasonably arranging the inclination angle at which the door body 120 is arranged obliquely relative to the horizontal plane, the flow guide groove 130 has good drainage efficiency and completeness, and at the same time, the door body 120 has a smaller volume, lower manufacturing cost, and is more beautiful under the condition that the door body 120 can reliably seal the mounting opening 112 of the accommodation cabin 111.

[0067] Specifically, the angle a at which the door body 120 is arranged obliquely relative to the horizontal plane can be 0.05 degrees, 0.1 degrees, 0.2 degrees, 0.3 degrees, 0.4 degrees, 0.49 degrees, or other angles, etc.

[0068] Specifically, one door body 120 can open or close the mounting opening 112, or two door bodies 120 can open or close the mounting opening 112. When one door body 120 opens or closes the mounting opening 112, the second side wall 133 can be located on either side of the left and right sides of the door body 120. For example, Figure 3 , and Figure 4As shown, when the two door bodies 120 open or close the installation opening 112, the second side wall 133 can be located on the side adjacent to the two door bodies 120, such as the left door 122 located on the left side and the right door 123 located on the right side, the second side wall 133 is located on the right side of the left door 122 and on the left side of the right door 123, so that the opening 134 of the flow guide groove 130 is located on the left side of the left door 122 and on the right side of the right door 123, so that the liquid is discharged from the left side of the left door 122 and the right side of the right door 123 under the guidance of the flow guide groove 130, respectively, to be discharged from the left and right sides of the base assembly 110.

[0069] As Figure 2 As shown, in some possible embodiments of the present application, the cooking device 100 further comprises a movable connecting piece 140 corresponding to the door body 120, a first end of the movable connecting piece 140 is connected with the inner wall of the door body 120, and a second end of the movable connecting piece 140 is connected with the base assembly 110. Specifically, the movable connecting piece 140 can be a hinge structure, which connects the door body 120 and the base assembly 110, so that the door body 120 can be moved relative to the base assembly 110 to open or close the installation opening 112 of the containing cabin 111. Specifically, the movable connecting piece 140 can also be a pivoting structure, a rotating structure, etc.

[0070] Among them, the door body 120 is provided with a protection edge 121 protruding towards the inside of the containing cabin 111 on the side away from the center of the installation opening 112, and the protection edge 121 is used to shield at least part of the movable connecting piece 140. The setting of the protection edge 121 plays a good shielding and waterproof role, which can reduce or avoid the liquid from seeping into the inside of the containing cabin 111 from the hinge structure, and plays a good waterproof protection role on the electrical elements 190 or other elements in the containing cabin 111. At the same time, the setting of the protection edge 121 makes it possible to see only a small part of the hinge structure or not see the hinge structure from the appearance of the cooking device 100, so as to improve the appearance of the cooking device 100.

[0071] In some embodiments, the first side wall 132 at least partially protrudes from the base assembly 110, so that the liquid in the flow guide groove 130 is guided to the outside of the base assembly 110 for discharge, avoiding the liquid from entering the connection between the door body 120 and the base assembly 110, or polluting the connection structure between the door body 120 and the base assembly 110, such as the movable connecting piece 140.

[0072] Specifically, the protection edge 121 can be a planar structure, an inclined surface structure, an arc-shaped structure, or other shaped structures.

[0073] Specifically, the protection edge 121 and the second side wall 133 can be located on opposite sides of the door body 120.

[0074] As Figure 8As shown, in some possible embodiments provided by the present invention, the cooking device 100 also includes: a partition 150, the partition 150 is located inside the accommodating chamber 111 to separate the accommodating chamber 111 into a first chamber 113 and a second chamber 114, the first chamber 113 is at least used to accommodate the liquid pipeline 180 of the cooking device 100, and the second chamber 114 is at least used to accommodate the electrical components 190 of the cooking device 100.

[0075] That is to say, the partition 150 separates the liquid pipeline 180 and the electrical component 190 in the storage chamber 111 into different chambers, which can prevent the liquid pipeline 180 in the first chamber 113 or the connection position of the liquid pipeline 180 from leaking, causing water to enter the second chamber 114 and cause the electrical component 190 to malfunction. The partition 150 plays a good water-blocking protection role for the electrical component 190 and realizes a good water-electricity isolation effect, which is beneficial to extend the service life of the electrical component 190, improve the reliability of the electrical component 190, and thereby improve the overall reliability of the cooking device 100.

[0076] It is understandable that other components may be installed in the first chamber 113, such as other water-resistant components; other components may also be arranged in the second chamber 114, such as the cookware 200 may be installed in the second chamber 114.

[0077] like Figure 8 As shown, in some possible embodiments provided by the present invention, the upper and lower ends of the partition 150 are respectively connected to the top wall and the bottom wall 115 of the storage chamber 111, that is, the partition 150 can also be understood as a support plate, and the partition 150 plays a good supporting role on the top wall of the storage chamber 111. Since the top wall of the base assembly 110 is usually a table top, the table top has a large span and usually requires support. By supporting the top wall through the partition 150, the setting of the top wall reinforcement structure or support structure can be reduced, thereby simplifying the structure and helping to reduce manufacturing costs.

[0078] At the same time, in this embodiment, the functions of the partition 150 are diversified, so that the partition 150 has a supporting function in addition to the isolation and water blocking function, further simplifying the structure and reducing the manufacturing cost.

[0079] The partition 150 is provided with a bending structure 151 along the front-to-back direction of the cooking device 100. The front-to-back direction of the cooking device 100 can be as follows: Figure 1 As shown by the arrow x in FIG, the mounting opening 112 of the accommodating compartment 111 may be located on the front side of the cooking device 100 .

[0080] like Figure 8As shown, in the embodiment, the partition plate 150 is provided with a bending structure 151 in the front-rear direction, which can strengthen the strength of the partition plate 150 itself, and meanwhile, the bending structure 151 can increase the supporting strength and has a good and stable supporting effect on the top wall, thereby improving the reliability and stability of the base assembly 110. Meanwhile, the provision of the bending structure 151 of the partition plate 150 enables the partition plate 150 to flexibly avoid other components of the cooking equipment 100, so that the structures of the first cavity 113 and the second cavity 114 are reasonable to realize flexible arrangement of various components.

[0081] Further, the rear end of the partition plate 150 is connected with the rear wall 116 of the containing cabin 111, and the front end of the partition plate 150 is at least partially exposed in the mounting opening 112, so that the partition plate 150 divides the containing cabin 111 into the first cavity 113 and the second cavity 114.

[0082] As Figure 8 shown, in some possible implemented embodiments provided by the utility model, the utensil 200 of the cooking equipment 100 is located at one side of the partition plate 150, which enables the bending structure 151 of the partition plate 150 to avoid the shape of the utensil 200, so that the utensil 200 is located at one side of the partition plate 150, facilitating assembly of the utensil 200 and assembly of the partition plate 150, and meanwhile, the reliable connection of the partition plate 150 with the top wall and the bottom wall 115 of the containing cabin 111 can be ensured to ensure the sealing property of the isolation of the first cavity 113 and the second cavity 114, and the structure of the first cavity 113 and the second cavity 114 can be ensured to be reasonable to contain other elements of the cooking equipment 100.

[0083] In some possible implemented embodiments provided by the utility model, the partition plate 150 comprises one plate provided with a bending structure, which enables the partition plate 150 to be an integral molding structure, facilitating processing and production, enabling the partition plate 150 to have good strength and provide stable support.

[0084] In some other possible implemented embodiments provided by the utility model, the partition plate 150 comprises at least two flat plates connected in sequence, and at least one group of two adjacent flat plates is provided in an inclined manner to form the bending structure 151, that is, the partition plate 150 can be formed by mutual inclination and bending of at least two flat plates, thereby meeting the requirements of different shapes and structures of the partition plate 150.

[0085] Among them, the partition plate 150 can comprise two flat plates, three flat plates, four flat plates or other number of flat plates. Among the plurality of flat plates, one group, two groups, three groups or other number of groups of two adjacent flat plates can be provided in an inclined manner to form the bending structure 151. Specifically, the plurality of flat plates can be provided as a foldable movable structure, or the plurality of flat plates are connected through a bolt structure, a plug-in structure, welding or the like.

[0086] Specifically, the shape and number of the bending structure 151 of the partition plate 150 can be reasonably designed according to the positions and shapes of various elements in the first chamber 113 and the second chamber 114 of the cooking device 100.

[0087] As shown in some possible embodiments provided by the utility model, the cooking device 100 further comprises a connecting joint 160, the partition plate 150 is provided with a through hole communicating the first chamber 113 and the second chamber 114, the connecting joint 160 is installed at the through hole, and the second chamber 114 is further used for accommodating a material spraying structure of the cooking device 100, and a liquid pipeline 180 is connected with the material spraying structure through the connecting joint 160. It can be understood that the material spraying structure can put liquid seasoning or water into the pot 200. Figure 9 In the embodiment, after the two ends of the connecting joint 160 are connected with the liquid pipeline 180 and the material spraying structure respectively, the liquid pipeline 180 and the material spraying structure are communicated, which is simple in operation, convenient in disassembly and assembly, facilitates separate maintenance of the liquid pipeline 180 and the material spraying structure, is beneficial to improving the maintenance efficiency and reducing the maintenance cost.

[0088] Further, as shown in some possible embodiments provided by the utility model, the cooking device 100 further comprises a sealing piece 170, the sealing piece 170 is installed at the through hole, the sealing piece 170 is located between the connecting joint 160 and the partition plate 150, the sealing piece 170 is used for sealing the gap between the connecting joint 160 and the partition plate 150, preventing the liquid in the liquid pipeline 180 or the first chamber 113 from flowing into the second chamber 114 through the gap at the through hole, so as to further reduce the damage of the liquid to the electrical element 190 in the second chamber 114, and is beneficial to prolonging the service life of the electrical element 190 or other elements in the second chamber 114. Specifically, the sealing piece 170 comprises at least one of a sealing ring, sealing cotton and sealing glue.

[0089] Figure 9 In some possible embodiments provided by the utility model, the cooking device 100 further comprises a heat dissipation assembly, at least part of the heat dissipation assembly is suspended on the base assembly 110. The heat dissipation assembly plays a good ventilation and heat dissipation effect on the base assembly 110, for example, the heat dissipation assembly can ventilate and dissipate heat for the electrical element 190 in the accommodation cabin 111, so as to reduce the possibility of damage of the electrical element 190 due to high temperature and prolong the service life of the electrical element 190.

[0090]

[0091] ​​Specifically, the heat dissipation assembly can be located in the second chamber 114 to achieve ventilation and heat dissipation of the electrical element 190 in the second chamber 114. Meanwhile, the base assembly 110 can be used to protect the heat dissipation assembly well to prolong the service life of the heat dissipation assembly and improve the neatness and aesthetics of the appearance of the cooking device 100.

[0092] It can be understood that, as shown in Figure 8 The pot 200 can also be located in the second chamber 114, and the electrical element 190 is used to heat the pot 200. The heat dissipation assembly located in the second chamber 114 can also ventilate and dissipate heat for the pot 200. In the description of the present application, the term "a plurality of" refers to two or more than two, unless otherwise specified, the terms "upper", "lower" and the like indicate the orientation or position relationship based on the orientation or position relationship described in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application; the terms "connection", "installation", "fixation" and the like should be understood broadly, for example, "connection" can be fixed connection, or detachable connection, or integral connection; it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0093] In the description of the present application, the terms "one embodiment", "some embodiments", "a specific embodiment" and the like mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0094] The above is only the preferred embodiment of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A cooking apparatus (100), characterized in that, The cooking device (100) comprises: a base assembly (110) having a containing cabin (111); a door body (120) movably connected with the base assembly (110) to open or close the containing cabin (111); wherein the door body (120) is provided with a flow guide groove (130) to guide liquid to at least one side of the door body (120).

2. The cooking device (100) according to claim 1, wherein: an opening (131) of the flow guide groove (130) faces upward, and the flow guide groove (130) comprises a plurality of oppositely arranged first side walls (132), at least one of the plurality of first side walls (132) is arranged to be inclined from a top to bottom direction to a direction close to another first side wall (132).

3. The cooking device (100) according to claim 2, wherein: the first side wall (132) comprises a first sub-side wall (1321) and a second sub-side wall (1322), the first sub-side wall (1321) is closer to the containing cabin (111) than the second sub-side wall (1322), a top of the first sub-side wall (1321) is protruded from a top of the second sub-side wall (1322), or a top of the second sub-side wall (1322) at least partially overlaps with the base assembly (110).

4. The cooking device (100) according to claim 3, wherein: an end of the first sub-side wall (1321) is at least partially bent away from the containing cabin (111).

5. The cooking device (100) according to claim 2, wherein: the flow guide groove (130) further comprises a second side wall (133) located on a side adjacent to the plurality of first side walls (132), the second side wall (133) and the plurality of first side walls (132) enclose the flow guide groove (130) with a single opening (134); an opening direction of the flow guide groove (130) is opposite to the containing cabin (111).

6. The cooking device (100) according to claim 1, wherein: a groove bottom (135) of the flow guide groove (130) is arranged to be inclined relative to a horizontal plane; and / or, the door body (120) is arranged to be inclined relative to a horizontal plane.

7. The cooking apparatus (100) according to claim 1, characterized in that, The cooking device (100) further comprises: a movable connecting member (140) corresponding to the door body (120), a first end of the movable connecting member (140) is connected with an inner wall of the door body (120), and a second end of the movable connecting member (140) is connected with the base assembly (110); wherein the containing cabin (111) is provided with a mounting opening (112), the door body (120) is used to open or close the mounting opening (112), and the door body (120) is provided with a protective edge (121) protruding toward an inside of the containing cabin (111) on a side away from a center of the mounting opening (112), the protective edge (121) is used to shield at least part of the movable connecting member (140).

8. The cooking apparatus (100) according to claim 1, characterized in that, The cooking device (100) further comprises: A partition (150) is located inside the accommodating cabin (111) to separate the accommodating cabin (111) into a first chamber (113) and a second chamber (114), the first chamber (113) is used at least for accommodating a liquid pipeline (180) of the cooking device (100), and the second chamber (114) is used at least for accommodating an electrical element (190) of the cooking device (100).

9. The cooking device (100) according to claim 8, characterized in that, upper and lower ends of the partition (150) are connected with top and bottom walls (115) of the accommodating cabin (111) respectively, and the partition (150) is provided with a bending structure (151) in the front-rear direction.

10. The cooking device (100) according to claim 9, characterized in that, a pot (200) of the cooking device (100) is located on one side of the partition (150); and / or the partition (150) comprises one plate provided with bending, or the partition (150) comprises at least two flat plates connected in sequence, and at least one group of two adjacent flat plates is provided with inclination.

11. The cooking apparatus (100) according to any one of claims 1 to 10, characterized in that, Further comprising: a heat dissipation assembly, at least part of which is suspended on the base assembly (110).