Cooking equipment

Through the design of male and female buckles, combined with unlocking bumps and unlocking parts, the kitchen utensil module is quickly installed and disassembled with bare hands, solving the problem of inconvenient installation and disassembly of traditional kitchen utensil modules and improving operational convenience.

CN120284071APending Publication Date: 2025-07-11NINGBO FOTILE KITCHEN WARE CO LTD
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Patent Information

Application Number
CN202510532517.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The assembly and disassembly process between traditional kitchen utensil modules requires the use of tools such as screwdrivers, which leads to inconvenient and time-consuming operation.

Method used

The design of male and female buckles is adopted, combined with unlocking bumps and unlocking parts, to realize freehand assembly and disassembly between modules, and the module is locked and unlocked through the buckles and staggered gap between male and female buckles.

Benefits of technology

The installation and disassembly process between modules does not require tools, and users can complete it quickly with their bare hands, which improves operational convenience and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a cooking device comprising: a first module; the second module can be connected to the first module in a sliding mode in the first direction; the male buckle is telescopically arranged on the second module in the second direction, and an included angle is formed between the first direction and the second direction; the female buckle is convexly arranged on the first module and is positioned on the moving path of the male buckle; the unlocking protruding block is arranged on the first module in a protruding mode and located on the moving path of the male buckle. The unlocking piece is arranged on the second module; in the process that the second module gets close to the first module in the first direction, firstly, the male buckle crosses the female buckle and is buckled with the female buckle so as to lock the second module to the first module, and then the male buckle slides to be locked by the unlocking piece in the mode of being attached to the unlocking protruding block so that the male buckle and the female buckle can be staggered in the second direction. According to the cooking equipment, the second module and the first module can be assembled and disassembled without any tool, and a user can finish the assembly and disassembly by bare hands, so that the assembly and disassembly between the second module and the first module are convenient and rapid.
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Description

Technical Field

[0001] This application relates to the technical field of kitchen utensils, and particularly to cooking equipment. Background Art

[0002] In the design of kitchen utensils, modular design is a design method that decomposes a product into multiple independent modules (functional units), which can be freely combined, replaced, or upgraded to meet the diverse needs of users. The kitchen utensils designed by the modular design method have the following advantages:

[0003] I. Disassemblable and combinable: The kitchen utensils are composed of multiple standardized modules, and users can flexibly match them according to their needs.

[0004] II. Functional expandability: The function can be expanded by adding new modules without replacing the whole product.

[0005] III. Easy to maintain: When a single module is damaged, it can be replaced separately, reducing the maintenance cost.

[0006] In traditional kitchen utensils, two different modules are fixed together by threaded fasteners. Each time the modules are assembled or disassembled, a screwdriver is needed to turn the threaded fasteners, which makes the assembly and disassembly between the two different modules inconvenient and time-consuming. Summary of the Invention

[0007] Based on this, it is necessary to provide a cooking equipment in view of the above problems.

[0008] To solve the above problems, the technical solution provided by this application is as follows:

[0009] A cooking equipment, which includes:

[0010] A first module;

[0011] A second module, slidably connected to the first module along a first direction;

[0012] A male buckle, telescopically arranged on the second module along a second direction, and there is an included angle between the first direction and the second direction;

[0013] A female buckle, protruding on the first module and located on the moving path of the male buckle;

[0014] An unlocking protrusion, protruding on the first module and located on the moving path of the male buckle; and

[0015] An unlocking member, arranged on the second module;

[0016] During the process that the second module approaches the first module along the first direction, first, the male buckle crosses over the female buckle and engages with the female buckle to lock the second module to the first module. Then, the male buckle slides along the unlocking protrusion until it is locked by the unlocking member, so that the male buckle and the female buckle are offset in the second direction.

[0017] This cooking device has at least the following beneficial effects:

[0018] The second module and the first module can be assembled according to the following process: The user manually makes the second module approach the first module along the first direction until the male buckle crosses over the female buckle and engages with the female buckle. After the male buckle crosses over the female buckle, the user releases the hand. The male buckle and the female buckle are engaged, and the second module can be locked to the first module, thus completing the assembly between the second module and the first module.

[0019] The second module and the first module can be disassembled according to the following process: On the basis of the completion of the assembly process between the second module and the first module, the user manually makes the second module approach the first module further along the first direction. During this process, the male buckle will reach the unlocking protrusion and slide along the unlocking protrusion until it is locked by the unlocking member. After the male buckle is locked by the unlocking member, the user manually makes the second module move away from the first module along the first direction until the second module is completely separated from the first module. In the state where the male buckle is locked by the unlocking member, the male buckle and the female buckle are offset in the second direction. Therefore, during the process that the second module moves away from the first module along the first direction, the male buckle and the female buckle cannot be engaged, the female buckle will not block the male buckle, and the second module can be completely separated from the first module along the first direction, thus completing the disassembly between the second module and the first module.

[0020] To sum up, in this cooking device, the assembly and disassembly between the second module and the first module do not require any tools and can be completed manually by the user. Therefore, the assembly and disassembly between the second module and the first module are convenient and fast.

[0021] In one embodiment, a first guiding surface is provided on the male buckle and / or the female buckle, and the first guiding surface is an inclined surface or a curved surface. During the process that the second module approaches the first module along the first direction, the first guiding surface can guide the male buckle to cross over the female buckle. And, a resisting surface is provided on both the male buckle and the female buckle. After the male buckle crosses over the female buckle, the resisting surface of the male buckle abuts against the resisting surface of the female buckle to engage the male buckle with the female buckle.

[0022] With such a setting, it is convenient for the male buckle to cross over the female buckle and engage with the female buckle after crossing over the female buckle.

[0023] In one embodiment, a part of the unlocking member forms a locking portion, and the unlocking member locks the male buckle through the locking portion; the unlocking member is disposed on the second module in a telescopable manner along a third direction, and an included angle exists between any two of the first direction, the second direction, and the third direction; the unlocking member can move along the third direction to a position where the locking portion is separated from the male buckle in a state where the male buckle is locked by the locking portion.

[0024] With such a setting, moving the unlocking member along the third direction can release the locking of the male buckle by the unlocking member.

[0025] In one embodiment, a second guiding surface is provided on the male buckle and / or the unlocking bump, and the second guiding surface is an inclined surface or a curved surface; during the process that the second module approaches the first module along the first direction, the second guiding surface can guide the male buckle to slide against the unlocking bump to a position where it is locked by the unlocking member.

[0026] With such a setting, it is convenient to lock the male buckle by the unlocking member.

[0027] In one embodiment, the male buckle includes a locking tongue, a first connecting portion, and a first pushing portion. The male buckle is engaged with the female buckle through the locking tongue. The first connecting portion is fixedly arranged on the locking tongue, and the first pushing portion protrudes from the first connecting portion; along the second direction, the first pushing portion is closer to the unlocking member than the locking tongue, and the first pushing portion and the locking portion are aligned along the second direction; the cooking device further includes a first elastic member, and the first elastic member is clamped between the unlocking member and the second module along the third direction; a groove is provided on the locking portion, and the opening direction of the groove is along the third direction; during the process that the male buckle slides against the unlocking bump, the first pushing portion pushes the unlocking member to move along the third direction towards the first elastic member until the first pushing portion is directly opposite to the opening of the groove. After that, the first elastic member pushes the unlocking member to approach the first pushing portion along the third direction until the first pushing portion enters the groove, so that the male buckle is locked by the unlocking member.

[0028] With such a setting, it is convenient to lock the male buckle by the unlocking member.

[0029] In one embodiment, a first transmission surface is provided on the first pushing portion and / or the unlocking member, and the first transmission surface is an inclined surface or a curved surface; during the process that the male buckle slides against the unlocking bump, the first transmission surface can convert the movement of the first pushing portion along the second direction into the movement of the unlocking member along the third direction.

[0030] With such a setting, it is convenient to implement the first pushing part to push the unlocking part to move along the third direction.

[0031] In one embodiment, the cooking device further includes a reset part, a reset bump and a second elastic part. The reset part is telescopically arranged in the second module along the second direction, and the reset bump protrudes from the first module and is located on the moving path of the reset part; the second elastic part is clamped between the male buckle and the second module along the second direction.

[0032] During the process of the second module approaching the first module along the first direction, first the reset part passes over the reset bump, and then the male buckle passes over the female buckle and engages with the female buckle; during the process of the male buckle sliding along the unlocking bump until it is locked by the unlocking part, the second elastic part is compressed in the second direction.

[0033] During the process of the second module moving away from the first module along the first direction, the reset part can still pass over the reset bump; during the process of the reset part passing over the reset bump, it pushes the unlocking part to move along the third direction to a position where the locking part is separated from the male buckle.

[0034] With such a setting, during the disassembly process between the second module and the first module, the male buckle is reset under the action of the reset part and the second elastic part and restores the ability to engage with the female buckle, without the user having to operate the unlocking part additionally to reset the male buckle after completing the disassembly between the second module and the first module, which is convenient for the user to assemble and disassemble the second module and the first module.

[0035] In one embodiment, a third guiding surface is provided on the reset part and / or the reset bump. The third guiding surface is an inclined surface or a curved surface. During the process of the second module approaching the first module along the first direction, the reset part passes over the reset bump through the third guiding surface; a fourth guiding surface is provided on the reset part and / or the reset bump. The fourth guiding surface is an inclined surface or a curved surface. During the process of the second module moving away from the first module along the first direction, the reset part passes over the reset bump through the fourth guiding surface.

[0036] With such a setting, it is convenient for the reset part to pass over the reset bump.

[0037] In one embodiment, the reset member includes a force-receiving portion, a second connecting portion, and a second pushing portion. The force-receiving portion is configured to cooperate with the reset bump so that the reset member can cross over the reset bump. The second connecting portion is fixedly provided on the force-receiving portion, and the second pushing portion protrudes from the second connecting portion. Along the second direction, the second pushing portion is closer to the unlocking member than the force-receiving portion, and the second pushing portion and the unlocking member are aligned along the second direction. A second transmission surface is provided on the second pushing portion and / or the unlocking member, and the second transmission surface is an inclined surface or a curved surface. During the process of the reset member approaching the unlocking member along the second direction, the second pushing portion pushes the unlocking member to move along the third direction through the second transmission surface.

[0038] With such an arrangement, it is convenient to implement the reset member to push the unlocking member, convenient to release the locking of the unlocking member on the male buckle, and convenient to achieve the reset of the male buckle.

[0039] In one embodiment, the first direction, the second direction, and the third direction are perpendicular to each other pairwise.

[0040] With such an arrangement, the movements of the second module, the male buckle, and the unlocking member are completely decoupled in space, which is beneficial to avoiding movement interference. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] Figure 1 is a perspective schematic diagram of a cooking device according to an embodiment of the present application;

[0042] Figure 2 is Figure 1 an enlarged schematic diagram of part A in

[0043] Figure 3 is Figure 1 a perspective schematic diagram of part of the structure in

[0044] Figure 4 is Figure 3 a perspective schematic diagram of the structure shown after removing the first module, the female buckle, the unlocking bump, and the reset bump;

[0045] Figure 5 is Figure 4 a perspective schematic diagram of the structure shown after removing the second module;

[0046] Figure 6 is Figure 5 a perspective schematic diagram of part of the structure in the structure shown;

[0047] Figure 7 is Figure 3 a right view of the structure shown;

[0048] Figure 8 is Figure 7Cross-sectional view of the shown structure at the B-B section position;

[0049] Figure 9 is Figure 7 Cross-sectional view of the shown structure at the C-C section position;

[0050] Figure 10 is Figure 7 Cross-sectional view of the shown structure at the D-D section position;

[0051] Figure 11 is Figure 3 Schematic diagram of the connection relationship among the first module, female buckle, unlocking convex block and reset convex block in the shown structure;

[0052] Figure 12 is Figure 11 Cross-sectional view of the shown structure.

[0053] Reference numerals:

[0054] 1. First module; 2. Second module; 3. Male buckle; 31. Lock tongue; 32. First connecting part; 33. First pushing part; 4. Female buckle; 5. Unlocking convex block; 6. Unlocking part; 61. Locking part; 611. Groove; 7. Reset part; 71. Force-receiving part; 72. Second connecting part; 73. Second pushing part; 8. Reset convex block; 101. First elastic part; 102. Second elastic part; 103. Third elastic part; 104. Fourth elastic part; 201. First guiding surface; 202. Second guiding surface; 203. Third guiding surface; 204. Fourth guiding surface; 205. Resisting surface; 301. First transmission surface; 302. Second transmission surface. Detailed implementation manners

[0055] To make the above objects, features and advantages of the present application more obvious and understandable, the following will describe the detailed implementation manners of the present application in conjunction with the accompanying drawings. Many specific details are set forth in the following description in order to fully understand the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the connotation of the present application. Therefore, the present application is not limited by the specific embodiments disclosed below.

[0056] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present application 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 therefore should not be construed as a limitation to the present application.

[0057] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present application, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise specifically defined.

[0058] In the present application, unless otherwise clearly specified and limited, the terms "mounted", "connected", "coupled", "fixed", etc. should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0059] In the present application, unless otherwise clearly specified and limited, the first feature being "on" or "under" the second feature may be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may be that the first feature is directly above or obliquely above the second feature, or merely indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "underneath" the second feature may be that the first feature is directly below or obliquely below the second feature, or merely indicates that the first feature has a lower horizontal height than the second feature.

[0060] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "upper", "lower", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation.

[0061] Referring to Figures 1 to 12 , the present application provides a cooking device, which includes a first module 1 and a second module 2, and the second module 2 is slidably connected to the first module 1 along a first direction. In Figures 1 to 12 the illustrated embodiment, the first direction is Figure 4 the up and down direction in

[0062] Referring to Figures 4 to 12 , in order to facilitate the assembly of the first module 1 and the second module 2, the cooking device further includes a male buckle 3 and a female buckle 4. The male buckle 3 is telescopically disposed on the second module 2 along a second direction, and there is an included angle between the first direction and the second direction. The female buckle 4 protrudes from the first module 1 and is located on the moving path of the male buckle 3. In Figures 1 to 12 the illustrated embodiment, the second direction is Figure 4 the left and right direction in

[0063] Referring to Figures 5 to 12 , in order to disassemble the first module 1 and the second module 2, the cooking device further includes an unlocking protrusion 5 and an unlocking member 6. The unlocking protrusion 5 protrudes from the first module 1 and is located on the moving path of the male buckle 3, and the unlocking member 6 is disposed on the second module 2.

[0064] Referring to Figure 8 , Figure 9 , Figure 11 and Figure 12 , during the process of the second module 2 approaching the first module 1 along the first direction, first, the male buckle 3 passes over the female buckle 4 and engages with the female buckle 4 to lock the second module 2 to the first module 1, and then the male buckle 3 slides along the unlocking protrusion 5 until it is locked by the unlocking member 6, so that the male buckle 3 and the female buckle 4 are offset in the second direction.

[0065] The assembly process between the second module 2 and the first module 1 is as follows: The user manually moves the second module 2 along the first direction close to the first module 1 until the male buckle 3 passes over the female buckle 4 and engages with the female buckle 4. After the male buckle 3 passes over the female buckle 4, the user releases the hand. The male buckle 3 engages with the female buckle 4, and the second module 2 can be locked to the first module 1, thus completing the assembly between the second module 2 and the first module 1.

[0066] The disassembly process between the second module 2 and the first module 1 is as follows: Based on the completion of the assembly process between the second module 2 and the first module 1, the user manually moves the second module 2 further closer to the first module 1 along the first direction. During this process, the male buckle 3 will reach the unlocking bump 5 and slide along the unlocking bump 5 until it is locked by the unlocking member 6. After the male buckle 3 is locked by the unlocking member 6, the user manually moves the second module 2 away from the first module 1 along the first direction until the second module 2 is completely separated from the first module 1. In the state where the male buckle 3 is locked by the unlocking member 6, the male buckle 3 and the female buckle 4 are offset in the second direction. Therefore, during the process of the second module 2 moving away from the first module 1 along the first direction, the male buckle 3 and the female buckle 4 cannot be engaged, the female buckle 4 will not block the male buckle 3, and the second module 2 can be completely separated from the first module 1 along the first direction, thus completing the disassembly between the second module 2 and the first module 1.

[0067] In summary, in this cooking device, the installation and disassembly between the second module 2 and the first module 1 do not require any tools and can be completed manually by the user. Therefore, the installation and disassembly between the second module 2 and the first module 1 are convenient and fast.

[0068] In Figure 1 the illustrated embodiment, the first module 1 is a cooking appliance (only a part of the first module 1 is shown in Figures 2 to 12 ), the second module 2 is a control board module, the cooking device further includes a third module (not labeled in the figure), the third module is a steam oven, both the first module 1 and the third module are controlled by the second module 2, and connection lines are provided on both the first module 1 and the third module, and these connection lines are plugged and unplugged with the second module 2.

[0069] This application does not particularly limit the functions and structures of the first module 1 and the second module 2. The specific types of the first module 1 and the second module 2 are not limited to those listed above, as long as they are two modules that need to be detachably connected together in a cooking device. For example: The first module 1 can also be a steam oven, and the second module 2 can also be a condensate water box.

[0070] Refer to Figure 6 and Figure 12 , a first guiding surface 201 is provided on the male buckle 3 and / or the female buckle 4, and the first guiding surface 201 is an inclined surface or a curved surface. During the process of the second module 2 moving closer to the first module 1 along the first direction, the first guiding surface 201 can guide the male buckle 3 to cross over the female buckle 4. And, a resisting surface 205 is provided on both the male buckle 3 and the female buckle 4. After the male buckle 3 crosses over the female buckle 4, the resisting surface 205 of the male buckle 3 abuts against the resisting surface 205 of the female buckle 4 to engage the male buckle 3 with the female buckle 4. In this way, it is convenient for the male buckle 3 to cross over the female buckle 4 and engage with the female buckle 4 after crossing over the female buckle 4.

[0071] In Figure 6 and Figure 12In the illustrated embodiment, the male buckle 3 and the female buckle 4 are both provided with a first guiding surface 201. In some other embodiments, the male buckle 3 is provided with a first guiding surface 201, and the female buckle 4 is not provided with a first guiding surface 201. In still some other embodiments, the female buckle 4 is provided with a first guiding surface 201, and the male buckle 3 is not provided with a first guiding surface 201.

[0072] In Figure 12 In the illustrated embodiment, in order to enable the male buckle 3 to stably abut against the female buckle 4 after passing over the female buckle 4, the abutting surface 205 is a plane, and the abutting surface 205 is perpendicular to the first direction.

[0073] In some embodiments, in order to enable the male buckle 3 to stably abut against the female buckle 4 after passing over the female buckle 4, the abutting surfaces 205 of both the male buckle 3 and the female buckle 4 are inclined planes, and the inclination directions of the abutting surfaces 205 of the male buckle 3 and the female buckle 4 are exactly the same (that is: the normal vectors of the abutting surfaces 205 on the male buckle 3 and the abutting surfaces 205 on the female buckle 4 are the same); the included angle between the abutting surface 205 of the female buckle 4 and the first module 1 is an acute angle.

[0074] In some Figures 1 to 12 In embodiments different from the illustrated embodiment, a part of the unlocking member 6 is a magnet and the unlocking member 6 is fixed to the second module 2, and the male buckle 3 is made of a ferromagnetic material (such as: iron, cobalt, nickel). In these embodiments, the disassembly process between the second module 2 and the first module 1 is as follows: On the basis that the assembly process between the second module 2 and the first module 1 is completed, the user manually moves the second module 2 closer to the first module 1 further along the first direction. During this process, the male buckle 3 will reach the unlocking bump 5 and slide along the unlocking bump 5 until it is attracted by the magnet on the unlocking member 6 and locked by the unlocking member 6. After the male buckle 3 is attracted by the magnet on the unlocking member 6, the user manually moves the second module 2 away from the first module 1 along the first direction until the second module 2 is completely separated from the first module 1. In order to enable the second module 2 and the first module 1 to be assembled together again, the locking of the male buckle 3 by the unlocking member 6 needs to be released. Before reassembling the second module 2 and the first module 1, the user can manually pull the male buckle 3 away from the magnet on the unlocking member 6, thereby releasing the locking of the male buckle 3 by the unlocking member 6.

[0075] Referring to Figure 6 , in some embodiments, a part of the unlocking member 6 forms a locking portion 61, and the unlocking member 6 locks the male buckle 3 through the locking portion 61; the unlocking member 6 is disposed on the second module 2 so as to be telescopic along the third direction, and the first direction, the second direction and the third direction form angles with each other pairwise. In Figures 1 to 12 In the illustrated embodiment, the third direction is Figure 4The front - rear direction. The unlocking member 6 can move along the third direction to a position where the locking portion 61 is separated from the male buckle 3 in a state where the male buckle 3 is locked by the locking portion 61. In this way, moving the unlocking member 6 along the third direction can release the locking of the male buckle 3 by the unlocking member 6.

[0076] In some embodiments different from Figures 1 to 12 the embodiment shown, the male buckle 3 is made of a ferromagnetic material (e.g., iron, cobalt, nickel), the locking portion 61 is a magnet, and the unlocking member 6 locks the male buckle 3 by attracting the male buckle 3 with the locking portion 61. In these embodiments, the disassembly process between the second module 2 and the first module 1 is as follows: On the basis that the assembly process between the second module 2 and the first module 1 is completed, the user manually moves the second module 2 further closer to the first module 1 along the first direction. During this process, the male buckle 3 will reach the unlocking bump 5 and slide along the unlocking bump 5 until it is attracted by the locking portion 61 and locked by the unlocking member 6. After the male buckle 3 is attracted by the locking portion 61, the user manually moves the second module 2 away from the first module 1 along the first direction until the second module 2 is completely separated from the first module 1. Before reassembling the second module 2 and the first module 1 again, move the unlocking member 6 along the third direction to a position where the locking portion 61 is separated from the male buckle 3, thereby releasing the locking of the male buckle 3 by the unlocking member 6.

[0077] Refer to Figure 6 and Figure 12 , in some embodiments, a second guiding surface 202 is provided on the male buckle 3 and / or the unlocking bump 5, and the second guiding surface 202 is an inclined surface or a curved surface. During the process of the second module 2 approaching the first module 1 along the first direction, the second guiding surface 202 can guide the male buckle 3 to slide along the unlocking bump 5 to a position where it is locked by the unlocking member 6. In this way, it is convenient to lock the male buckle 3 by the unlocking member 6.

[0078] In Figure 6 and Figure 12 the embodiments shown, second guiding surfaces 202 are provided on both the male buckle 3 and the unlocking bump 5. In other embodiments, a second guiding surface 202 is provided on the male buckle 3, and the unlocking bump 5 is not provided with a second guiding surface 202. In still other embodiments, a second guiding surface 202 is provided on the unlocking bump 5, and the male buckle 3 is not provided with a second guiding surface 202.

[0079] Refer to Figure 6 , the first guiding surface 201 on the male buckle 3 and the second guiding surface 202 on the male buckle 3 are the same surface.

[0080] In Figure 9 and Figure 12In the illustrated embodiment, to prevent the male buckle 3 from being locked by the unlocking member 6 during the process of passing over the female buckle 4, along the second direction, the female buckle 4 is farther from the unlocking member 6 than the unlocking protrusion 5. In other words, the distance between the female buckle 4 and the unlocking member 6 in the second direction is greater than the distance between the unlocking protrusion 5 and the unlocking member 6 in the second direction.

[0081] Referring to Figure 6 , the male buckle 3 includes a locking tongue 31, a first connecting portion 32, and a first pushing portion 33. The male buckle 3 is fastened to the female buckle 4 through the locking tongue 31. The first connecting portion 32 is fixedly arranged on the locking tongue 31, and the first pushing portion 33 protrudes from the first connecting portion 32. Along the second direction, the first pushing portion 33 is closer to the unlocking member 6 than the locking tongue 31, and the first pushing portion 33 and the locking portion 61 are aligned along the second direction. The cooking device further includes a first elastic member 101. The first elastic member 101 is clamped between the unlocking member 6 and the second module 2 along the third direction. A groove 611 is provided on the locking portion 61, and the opening of the groove 611 faces along the third direction. During the process of the male buckle 3 sliding against the unlocking protrusion 5, the first pushing portion 33 pushes the unlocking member 6 to slide along the third direction towards the first elastic member 101 until the first pushing portion 33 is directly opposite to the opening of the groove 611. After that, the first elastic member 101 pushes the unlocking member 6 to approach the first pushing portion 33 along the third direction until the first pushing portion 33 enters the groove 611, so that the male buckle 3 is locked by the unlocking member 6. In this way, it is convenient to lock the male buckle 3 by the unlocking member 6. In these embodiments, the assembly process between the second module 2 and the first module 1 is as follows: The user manually makes the second module 2 approach the first module 1 along the first direction until the locking tongue 31 passes over the female buckle 4 and is fastened to the female buckle 4, and after the locking tongue 31 passes over the female buckle 4, the user releases the hand. The disassembly process between the second module 2 and the first module 1 is as follows: On the basis of the completion of the assembly process between the second module 2 and the first module 1, the user manually makes the second module 2 approach the first module 1 further along the first direction. After the first pushing portion 33 enters the groove 611, the user manually makes the second module 2 move away from the first module 1 along the first direction until the second module 2 is completely separated from the first module 1. During the disassembly process between the second module 2 and the first module 1, first, the locking tongue 31 will reach the unlocking protrusion 5 and slide against the unlocking protrusion 5, which makes the male buckle 3 approach the first module 1 along the first direction on the one hand and approach the unlocking member 6 along the second direction on the other hand. During the process of the male buckle 3 approaching the unlocking member 6 along the second direction, the first pushing portion 33 pushes the unlocking member 6 to move along the third direction towards the first elastic member 101 until the first pushing portion 33 is directly opposite to the opening of the groove 611, which compresses the first elastic member 101 in the third direction. After the first pushing portion 33 is directly opposite to the opening of the groove 611, the first elastic member 101 expands in the third direction and pushes the unlocking member 6 to approach the first pushing portion 33 along the third direction until the first pushing portion 33 enters the groove 611, so that the male buckle 3 is locked by the unlocking member 6.

[0082] Refer to Figure 6 , a first driving surface 301 is provided on the first driving part 33 and / or the unlocking part 6, and the first driving surface 301 is an inclined surface or a curved surface; during the process of the male buckle 3 sliding along the unlocking bump 5, the first driving surface 301 can convert the movement of the first driving part 33 in the second direction into the movement of the unlocking part 6 in the third direction. This facilitates the first driving part 33 to push the unlocking part 6 to move in the third direction.

[0083] In Figure 6 In the illustrated embodiment, the unlocking part 6 is provided with the first driving surface 301, and the first driving part 33 is not provided with the first driving surface 301. In some other embodiments, the first driving part 33 is provided with the first driving surface 301, and the unlocking part 6 is not provided with the first driving surface 301. In still some other embodiments, both the first driving part 33 and the unlocking part 6 are provided with the first driving surface 301.

[0084] Refer to Figures 4 to 12 , the cooking device further includes a reset part 7, a reset bump 8 and a second elastic part 102. The reset part 7 is disposed on the second module 2 in a second-direction telescopic manner, and the reset bump 8 protrudes from the first module 1 and is located on the movement path of the reset part 7. The second elastic part 102 is clamped between the male buckle 3 and the second module 2 along the second direction. During the process of the second module 2 approaching the first module 1 along the first direction, first, the reset part 7 passes over the reset bump 8, and then the male buckle 3 passes over the female buckle 4 and engages with the female buckle 4. During the process of the male buckle 3 sliding along the unlocking bump 5 until it is locked by the unlocking part 6, the second elastic part 102 is compressed in the second direction. During the process of the second module 2 moving away from the first module 1 along the first direction, the reset part 7 can still pass over the reset bump 8. When the reset part 7 passes over the reset bump 8, it pushes the unlocking part 6 to move in the third direction to a position where the locking part 61 is separated from the male buckle 3. In this way, during the disassembly process between the second module 2 and the first module 1, the male buckle 3 is reset under the action of the reset part 7 and the second elastic part 102 and restores the ability to engage with the female buckle 4, without the user having to operate the unlocking part 6 additionally to reset the male buckle 3 after completing the disassembly between the second module 2 and the first module 1, which is convenient for the user to assemble and disassemble the second module 2 and the first module 1.

[0085] In some embodiments, the cooking device does not include the reset part 7 and the reset bump 8, but includes the second elastic part 102. After completing the disassembly between the second module 2 and the first module 1, the user manually moves the unlocking part 6 in a direction opposite to the opening direction of the groove 611 to complete the reset of the male buckle 3.

[0086] Refer to Figure 12, a third guiding surface 203 is provided on the reset member 7 and / or the reset bump 8. The third guiding surface 203 is an inclined surface or a curved surface. During the process of the second module 2 approaching the first module 1 along the first direction, the reset member 7 crosses over the reset bump 8 through the third guiding surface 203; a fourth guiding surface 204 is provided on the reset member 7 and / or the reset bump 8. The fourth guiding surface 204 is an inclined surface or a curved surface. During the process of the second module 2 moving away from the first module 1 along the first direction, the reset member 7 crosses over the reset bump 8 through the fourth guiding surface 204. In this way, it is convenient for the reset member 7 to cross over the reset bump 8.

[0087] In some embodiments, third guiding surfaces 203 are provided on both the reset member 7 and the reset bump 8. In some other embodiments, the reset member 7 is provided with the third guiding surface 203, and the reset bump 8 is not provided with the third guiding surface 203. In still some other embodiments, the reset bump 8 is provided with the third guiding surface 203, and the reset member 7 is not provided with the third guiding surface 203.

[0088] In some embodiments, fourth guiding surfaces 204 are provided on both the reset member 7 and the reset bump 8. In some other embodiments, the reset member 7 is provided with the fourth guiding surface 204, and the reset bump 8 is not provided with the fourth guiding surface 204. In still some other embodiments, the reset bump 8 is provided with the fourth guiding surface 204, and the reset member 7 is not provided with the fourth guiding surface 204.

[0089] Refer to Figure 6 , the reset member 7 includes a force-receiving portion 71, a second connecting portion 72, and a second pushing portion 73. The force-receiving portion 71 is used to cooperate with the reset bump 8 so that the reset member 7 can cross over the reset bump 8. The second connecting portion 72 is fixedly provided on the force-receiving portion 71, and the second pushing portion 73 protrudes from the second connecting portion 72. Along the second direction, the second pushing portion 73 is closer to the unlocking member 6 than the force-receiving portion 71, and the second pushing portion 73 and the unlocking member 6 are aligned along the second direction. A second transmission surface 302 is provided on the second pushing portion 73 and / or the unlocking member 6. The second transmission surface 302 is an inclined surface or a curved surface. During the process of the reset member 7 approaching the unlocking member 6 along the second direction, the second pushing portion 73 pushes the unlocking member 6 to move along the third direction through the second transmission surface 302. In this way, it is convenient to realize the reset member 7 pushing the unlocking member 6, convenient to release the locking of the unlocking member 6 on the male buckle 3, and convenient to realize the reset of the male buckle 3.

[0090] In Figure 6 In the illustrated embodiment, the unlocking member 6 is provided with the second transmission surface 302, and the second pushing portion 73 is not provided with the second transmission surface 302. In some other embodiments, the second pushing portion 73 is provided with the second transmission surface 302, and the unlocking member 6 is not provided with the second transmission surface 302. In still some other embodiments, both the second pushing portion 73 and the unlocking member 6 are provided with the second transmission surface 302.

[0091] Preferably, the first direction, the second direction, and the third direction are perpendicular to each other pairwise. In this way, the movements of the second module 2, the male buckle 3, and the unlocking member 6 are completely decoupled in space, which is beneficial to avoiding movement interference. In Figure 4 In the illustrated embodiment, the first direction is the up-down direction, the second direction is the left-right direction, and the third direction is the front-back direction. In some embodiments, the first direction may also be the left-right direction or the front-back direction, the second direction may also be the up-down direction or the front-back direction, and the third direction may also be the up-down direction or the left-right direction. It can be understood that the first direction, the second direction, and the third direction are not limited to the vertical direction or the horizontal direction. In some embodiments, they may also be inclined directions.

[0092] Referring to Figure 5 and Figure 10 , in order to realize the reset of the reset member 7, the cooking device further includes a third elastic member 103, and the third elastic member 103 is clamped between the reset member 7 and the second module 2 along the second direction.

[0093] Referring to Figures 4 to 9 , the cooking device further includes a fourth elastic member 104, and the fourth elastic member 104 is clamped between the first module 1 and the second module 2 along the first direction. During the process that the second module 2 approaches the first module 1 along the first direction, the fourth elastic member 104 is compressed in the first direction and generates a large elastic force on the first module 1. The elastic force of the fourth elastic member 104 on the first module 1 in the first direction can enable the male buckle 3 to abut against the female buckle 4 along the first direction, which is beneficial to the male buckle 3 being stably fastened to the female buckle 4.

[0094] In the above embodiments, the reset of the unlocking member 6 is realized by the elastic force of the first elastic member 101, the reset of the male buckle 3 is realized by the elastic force of the second elastic member 102, the reset of the reset member 7 is realized by the elastic force of the third elastic member 103, and the stable fastening of the male buckle 3 and the female buckle 4 is realized by the elastic force of the fourth elastic member 104.

[0095] In other embodiments, the first elastic member 101, the second elastic member 102, the third elastic member 103, and the fourth elastic member 104 are all replaced by two oppositely arranged magnets. In each set of oppositely arranged magnets, the same magnetic poles of the two magnets face each other. In these embodiments, the unlocking member 6, the male buckle 3, and the reset member 7 are all reset by the repulsive force between the same magnetic poles, and the male buckle 3 and the female buckle 4 are stably fastened by the repulsive force between the same magnetic poles. Specifically, the cooking device includes four sets of magnets, each set of magnets includes two magnets, one set of magnets is respectively fixed to the unlocking member 6 and the second module 2 and arranged in sequence along the third direction, one set of magnets is respectively fixed to the male buckle 3 and the second module 2 and arranged in sequence along the second direction, one set of magnets is respectively fixed to the reset member 7 and the second module 2 and arranged in sequence along the second direction, and one set of magnets is respectively fixed to the second module 2 and the first module 1 and arranged in sequence along the first direction.

[0096] Referring to Figures 4 to 10 , the male buckle 3, the female buckle 4, the unlocking protrusion 5, the unlocking member 6, the reset protrusion 8, the reset member 7, the first elastic member 101, the second elastic member 102, the third elastic member 103, and the fourth elastic member 104 are all provided in two and arranged in one-to-one correspondence to form two sets of quick disassembly and assembly components. Each set of quick disassembly and assembly components includes a male buckle 3, a female buckle 4, an unlocking protrusion 5, an unlocking member 6, a reset protrusion 8, a reset member 7, a first elastic member 101, a second elastic member 102, a third elastic member 103, and a fourth elastic member 104, and these two sets of quick disassembly and assembly components are symmetrically arranged.

[0097] In other embodiments, only one of the male buckle 3, the female buckle 4, the unlocking protrusion 5, the unlocking member 6, the reset protrusion 8, the reset member 7, the first elastic member 101, the second elastic member 102, the third elastic member 103, and the fourth elastic member 104 may be provided.

[0098] Exemplarily, the first elastic member 101, the second elastic member 102, the third elastic member 103, and the fourth elastic member 104 are springs or rubber members.

[0099] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered to be within the scope described in this specification.

[0100] The above-described embodiments merely represent several implementation manners of the present application. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the protection scope of the present application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several modifications and improvements can still be made, and these all fall within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the appended claims.

Claims

1. A cooking device, characterized in that, Comprising: A first module (1); A second module (2) slidably connected to the first module (1) along a first direction; A male buckle (3) telescopically arranged in the second module (2) along a second direction, there being an included angle between the first direction and the second direction; A female buckle (4) protruding from the first module (1) and located on the moving path of the male buckle (3); An unlocking bump (5) protruding from the first module (1) and located on the moving path of the male buckle (3); and An unlocking member (6) arranged on the second module (2); During the process of the second module (2) approaching the first module (1) along the first direction, first the male buckle (3) passes over the female buckle (4) and engages with the female buckle (4) to lock the second module (2) to the first module (1), and then the male buckle (3) slides along the unlocking bump (5) until it is locked by the unlocking member (6), so that the male buckle (3) and the female buckle (4) are displaced in the second direction.

2. The cooking device according to claim 1, characterized in that, A first guiding surface (201) is provided on the male buckle (3) and / or the female buckle (4), and the first guiding surface (201) is an inclined surface or a curved surface; during the process of the second module (2) approaching the first module (1) along the first direction, the first guiding surface (201) can guide the male buckle (3) to pass over the female buckle (4); and, a resisting surface (205) is provided on both the male buckle (3) and the female buckle (4), and after the male buckle (3) passes over the female buckle (4), the resisting surface (205) of the male buckle (3) abuts against the resisting surface (205) of the female buckle (4) so that the male buckle (3) engages with the female buckle (4).

3. The cooking device according to claim 1, characterized in that, A part of the unlocking member (6) forms a locking portion (61), and the unlocking member (6) locks the male buckle (3) through the locking portion (61); the unlocking member (6) is telescopically arranged in the second module (2) along a third direction, and there are included angles between the first direction, the second direction and the third direction pairwise; the unlocking member (6) can move along the third direction to a position where the locking portion (61) is separated from the male buckle (3) in a state where the male buckle (3) is locked by the locking portion (61).

4. The cooking device according to claim 3, characterized in that, A second guiding surface (202) is provided on the male buckle (3) and / or the unlocking bump (5), and the second guiding surface (202) is an inclined surface or a curved surface; during the process of the second module (2) approaching the first module (1) along the first direction, the second guiding surface (202) can guide the male buckle (3) to slide along the unlocking bump (5) to a position where it is locked by the unlocking member (6).

5. The cooking device according to claim 4, characterized in that, The male buckle (3) includes a locking tongue (31), a first connecting portion (32), and a first pushing portion (33). The male buckle (3) is latched with the female buckle (4) through the locking tongue (31). The first connecting portion (32) is fixedly provided on the locking tongue (31), and the first pushing portion (33) protrudes from the first connecting portion (32). Along the second direction, the first pushing portion (33) is closer to the unlocking member (6) than the locking tongue (31), and the first pushing portion (33) and the locking portion (61) are aligned along the second direction. The cooking device further includes a first elastic member (101). The first elastic member (101) is clamped between the unlocking member (6) and the second module (2) along the third direction. A groove (611) is provided on the locking portion (61), and the opening of the groove (611) faces along the third direction. During the process of the male buckle (3) sliding against the unlocking protrusion (5), the first pushing portion (33) pushes the unlocking member (6) to move along the third direction towards the first elastic member (101) until the first pushing portion (33) is directly opposite to the opening of the groove (611). After that, the first elastic member (101) pushes the unlocking member (6) to approach the first pushing portion (33) along the third direction until the first pushing portion (33) enters the groove (611), so that the male buckle (3) is locked by the unlocking member (6).

6. The cooking device according to claim 5, characterized in that, A first transmission surface (301) is provided on the first pushing portion (33) and / or the unlocking member (6). The first transmission surface (301) is an inclined surface or a curved surface. During the process of the male buckle (3) sliding against the unlocking protrusion (5), the first transmission surface (301) can convert the movement of the first pushing portion (33) along the second direction into the movement of the unlocking member (6) along the third direction.

7. The cooking device according to claim 3, characterized in that, The cooking device further includes a reset member (7), a reset protrusion (8), and a second elastic member (102). The reset member (7) is telescopically arranged in the second module (2) along the second direction. The reset protrusion (8) protrudes from the first module (1) and is located on the movement path of the reset member (7). The second elastic member (102) is clamped between the male buckle (3) and the second module (2) along the second direction. During the process of the second module (2) approaching the first module (1) along the first direction, first, the reset member (7) passes over the reset protrusion (8), and then the male buckle (3) passes over the female buckle (4) and is latched with the female buckle (4). During the process of the male buckle (3) sliding against the unlocking protrusion (5) until it is locked by the unlocking member (6), the second elastic member (102) is compressed in the second direction. During the process that the second module (2) moves away from the first module (1) along the first direction, the reset member (7) can still cross over the reset bump (8); during the process that the reset member (7) crosses over the reset bump (8), the reset member (7) pushes the unlocking member (6) to move along the third direction to a position where the locking portion (61) is separated from the male buckle (3).

8. The cooking device according to claim 7, characterized in that, A third guiding surface (203) is provided on the reset member (7) and / or the reset bump (8), and the third guiding surface (203) is an inclined surface or a curved surface. During the process that the second module (2) approaches the first module (1) along the first direction, the reset member (7) crosses over the reset bump (8) through the third guiding surface (203); a fourth guiding surface (204) is provided on the reset member (7) and / or the reset bump (8), and the fourth guiding surface (204) is an inclined surface or a curved surface. During the process that the second module (2) moves away from the first module (1) along the first direction, the reset member (7) crosses over the reset bump (8) through the fourth guiding surface (204).

9. The cooking device according to claim 7, characterized in that, The reset member (7) includes a force-receiving portion (71), a second connecting portion (72), and a second pushing portion (73). The force-receiving portion (71) is used to cooperate with the reset bump (8) so that the reset member (7) can cross over the reset bump (8). The second connecting portion (72) is fixedly arranged on the force-receiving portion (71), and the second pushing portion (73) protrudes from the second connecting portion (72); along the second direction, the second pushing portion (73) is closer to the unlocking member (6) than the force-receiving portion (71), and the second pushing portion (73) and the unlocking member (6) are aligned along the second direction; a second transmission surface (302) is provided on the second pushing portion (73) and / or the unlocking member (6), and the second transmission surface (302) is an inclined surface or a curved surface; during the process that the reset member (7) approaches the unlocking member (6) along the second direction, the second pushing portion (73) pushes the unlocking member (6) to move along the third direction through the second transmission surface (302).

10. The cooking device according to claim 3, characterized in that, The first direction, the second direction, and the third direction are perpendicular to each other in pairs.