Kitchen ware provided with pressing type storage box

By designing a press-type storage box on the kitchen frying machine, the elastic components and press-disassembly components are used to achieve convenient storage of auxiliary accessories, which solves the problem of forgetting auxiliary accessories and improves the user experience.

CN120240868APending Publication Date: 2025-07-04ZHEJIANG TIANXI KITCHEN APPLIANCE CO LTD
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Patent Information

Application Number
CN202510637916.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

The auxiliary accessories of existing kitchen frying machines (such as temperature probes) are small and easy to be ignored or forgotten, affecting the consumer's experience.

Method used

A kitchenware equipped with a press-type storage box is designed. By setting a box groove and an elastic component on the machine base, the press-and-disassembly assembly component is used to realize the removable connection of the storage box. The elastic component provides abutment force to facilitate the storage and access of auxiliary accessories.

Benefits of technology

It improves the convenience of storage of auxiliary accessories and improves the consumer's user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides kitchen ware provided with a pressing type storage box. The kitchen ware comprises the storage box, a pressing disassembly and assembly assembly and a machine base. A box groove is formed in the machine base; the shape of the storage box corresponds to that of the box groove, and the storage box is detachably arranged in the box groove; an elastic assembly is arranged on the side, facing the opening of the box groove, in the box groove. The elastic assembly can abut against the storage box so as to provide abutting force for the storage box. The pressing disassembly and assembly assembly is arranged on the machine base and can be connected with the storage box in a clamped mode. When the storage box is installed, the storage box is contained in the box groove, and the storage box is connected with the pressing disassembly and assembly assembly in a clamped mode. When the storage box is disassembled, the elastic assembly provides abutting force for the storage box so that the storage box can be separated from the pressing disassembly and assembly assembly. In the embodiment of the invention, the storage box can be placed in the box groove or disassembled from the box groove, and the storage box can be assembled or disassembled by pressing the disassembly and assembly component, so that the storage of the auxiliary accessories is realized.
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Description

Technical Field

[0001] This application relates to the technical field of kitchen utensils, and particularly relates to a kitchen utensil provided with a push-type storage box. Background Art

[0002] A griddle is a kitchen appliance that combines the functions of frying and grilling, mainly used for cooking various delicacies, such as fried eggs, pancakes, grilled meat, etc. The griddle is usually designed with double-sided heating, and it can heat the food evenly and quickly, thus ensuring the cooking state of the food. The griddle has the characteristics of multi-function, non-stick coating, intelligent control, etc.

[0003] Among them, auxiliary accessories including temperature probes are often provided on the griddle. People can complete functions such as temperature detection by installing these auxiliary accessories on the griddle. However, because these auxiliary accessories are relatively small, they are easily overlooked or forgotten by people, so that when people need to use them, they cannot find the auxiliary accessories, affecting the use experience of consumers. Summary of the Invention

[0004] In order to solve the above technical problems, the present invention discloses a kitchen utensil provided with a push-type storage box, which can solve the technical problems that these auxiliary accessories in the prior art are relatively small, easily overlooked or forgotten by people, so that when people need to use them, they cannot find the auxiliary accessories, affecting the use experience of consumers.

[0005] In order to achieve the above object, the present application provides a kitchen utensil provided with a push-type storage box. This kitchen utensil includes a storage box, a push-type disassembly and assembly component, and a machine base;

[0006] A box groove is provided on the machine base; the shape of the storage box corresponds to the shape of the box groove, and the storage box is detachably arranged in the box groove;

[0007] An elastic component is provided on one side of the box groove facing the opening of the box groove; the elastic component can abut against the storage box, so as to provide a abutting force to the storage box;

[0008] The push-type disassembly and assembly component is arranged on the machine base, and the push-type disassembly and assembly component can be detachably connected with the storage box;

[0009] During the disassembly and assembly process of the storage box, when installing the storage box, the box groove accommodates the storage box, and the storage box is detachably connected with the push-type disassembly and assembly component; when removing the storage box, the elastic component provides a abutting force to the storage box so that the storage box is separated from the push-type disassembly and assembly component.

[0010] In a possible embodiment, the push-type disassembly and assembly component includes a locking member and a return spring;

[0011] The push-type disassembly and assembly component is detachably connected with the storage box through the locking member; the first end of the return spring is arranged on the side of the locking member away from the storage box.

[0012] In a possible embodiment, the pressing and disassembling assembly includes a guiding chute;

[0013] The guiding chute is arranged on the machine base; the locking member is slidably arranged in the guiding chute;

[0014] The second end of the return spring is arranged on the guiding chute; the return spring can provide an elastic force to the locking member to make the locking member slide along the guiding chute towards the box slot.

[0015] In a possible embodiment, the pressing and disassembling assembly includes a limiting hook needle; the limiting hook needle is rotatably arranged on the guiding chute; the limiting hook needle includes a hook needle end;

[0016] The locking member includes a guiding groove; during the process of disassembling and assembling the storage box, the hook needle end always slides in the guiding groove.

[0017] In a possible embodiment, the guiding groove includes a first guiding groove and a second guiding groove;

[0018] When installing the storage box, the hook needle end slides directionally in the first guiding groove; when disassembling the storage box, the hook needle end slides directionally in the second guiding groove.

[0019] In a possible embodiment, there are a first position and a second position in the first guiding groove; the second position is behind the first position along the sliding direction of the hook needle end;

[0020] When the hook needle end is located at the first position, the elastic member in the elastic assembly is in a natural and relaxed state; when the hook needle end is located at the second position, the elastic member in the elastic assembly is in a compressed state, and the abutting force provided by the elastic assembly to the storage box reaches the maximum value when the hook needle end slides in the first guiding groove.

[0021] In a possible embodiment, there are a third position and a fourth position in the second guiding groove; the third position is behind the fourth position along the sliding direction of the hook needle end;

[0022] When the hook needle end is located at the third position, the pressing and disassembling assembly is snap-connected to the storage box; when the hook needle end is located at the fourth position, the elastic member in the elastic assembly is in a compressed state, and the abutting force provided by the elastic assembly to the storage box reaches the maximum value when the hook needle end slides in the second guiding groove.

[0023] In a possible embodiment, the pressing and disassembling assembly includes a surrounding plate and a guiding baffle;

[0024] The guiding baffle includes a first plate end and a second plate end; the surrounding plate and the first plate end jointly form the first guiding groove, and the surrounding plate and the second plate end jointly form the second guiding groove.

[0025] In a possible embodiment, the first plate end and the second plate end together form a "V"-shaped plate;

[0026] The surrounding plate includes a V-shaped surrounding plate; the V-shaped surrounding plate is located on the opening side of the "V"-shaped plate;

[0027] The tip of the V-shaped surrounding plate is arranged towards the first plate end.

[0028] In a possible embodiment, the guiding member includes a first locking structure; the first locking structure can be locked with the storage box;

[0029] The guiding chute includes a chute opening; during the disassembly and assembly of the storage box, the first locking structure can extend out of or retract into the chute opening; and when the first locking structure retracts into the chute opening, the chute opening can clamp the first locking structure.

[0030] In a possible embodiment, the elastic component includes at least two elastic members;

[0031] At least two elastic members are evenly dispersed on the side of the box groove facing the box groove opening.

[0032] In a possible embodiment, the elastic member includes a spring.

[0033] In a possible embodiment, the storage box is used to accommodate a temperature probe.

[0034] The technical solution provided by the embodiment of the present application has the following technical effects:

[0035] In the embodiment of the present application, when pressing the storage box arranged on the machine base, the installation of the storage box can be realized by the clamping connection of the pressing disassembly and assembly component and the storage box, and the disassembly of the storage box can be realized by the abutting force provided by the elastic component to the storage box, so that people can place auxiliary accessories including a temperature probe in the storage box to realize the storage of auxiliary accessories, improving the use experience of consumers. Description of the Drawings

[0036] In order to more clearly illustrate the technical solutions and advantages in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required to be used in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to these drawings.

[0037] Figure 1 It is a schematic structural diagram of a kitchen utensil provided with a push-button storage box according to an embodiment of the present application;

[0038] Figure 2It is a partial enlarged schematic view of the A partial surface of a kitchen utensil provided with a push-type storage box in the present application example when the storage box is engaged with the push-on and disassembly component;

[0039] Figure 3 It is a partial enlarged schematic view of the A partial surface of a kitchen utensil provided with a push-type storage box in the present application example when the push-on and disassembly component is not engaged with the storage box;

[0040] Figure 4 It is a partial structural schematic view of the push-on and disassembly component of a kitchen utensil provided with a push-type storage box in the present application example;

[0041] Among them, the reference numerals in the figure are explained as follows:

[0042] 1 - Storage box; 11 - Second card stop structure; 2 - Push-on and disassembly component; 21 - Card stop member; 211 - First card stop structure; 212 - Guide groove; 213 - First guide groove; 214 - First position; 215 - Second position; 216 - Second guide groove; 217 - Third position; 218 - Fourth position; 22 - Return spring; 23 - Guide chute; 231 - Chute opening; 24 - Limit hook needle; 241 - Hook needle end; 25 - Enclosure; 251 - V-shaped enclosure; 26 - Guide baffle; 261 - First plate end; 262 - Second plate end; 3 - Machine base; 31 - Box groove; 32 - Box groove opening; 33 - Elastic component; 331 - Elastic member; 4 - Temperature probe. Detailed implementation manners

[0043] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without making creative efforts shall fall within the protection scope of the present application.

[0044] It should be noted that the "one embodiment" or "embodiment" in the specification of the embodiments of the present application refers to specific features, structures or characteristics that may be included in at least one implementation manner of the present application. It should be understood that in the specification, claims and the above-mentioned drawings of the embodiments of the present application, the orientation or positional relationship indicated by terms such as "upper", "lower", "top", "bottom", 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 cannot be construed as a limitation of the present application. The terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. Moreover, terms such as "first" and "second" are used to distinguish similar objects and do not necessarily have to be used to describe a specific order or sequence.

[0045] As Figures 1 to 4 shown, the present application discloses a kitchen utensil provided with a push-type storage box 1. The kitchen utensil includes a storage box 1, a push-and-disassemble component 2 and a base 3. A box slot 31 may be provided on the base 3. The box slot 31 can be used to accommodate the storage box 1. The shape of the storage box 1 may correspond to the shape of the box slot 31, and the storage box 1 is detachably arranged in the box slot 31.

[0046] Optionally, the box slot 31 is provided with a box slot opening 32. On one side of the box slot 31 facing the box slot opening 32, an elastic component 33 is provided. The elastic component 33 may include at least one elastic member 331. The elastic component 33 can abut against the storage box 1, and each elastic member 331 can abut against the storage box 1 to provide a abutting force to the storage box 1. When the elastic member 331 abuts against the storage box 1, the elastic member 331 may be in a compressed state.

[0047] Optionally, the push-and-disassemble component 2 may be provided on the base 3, and the push-and-disassemble component 2 can be engaged with the storage box 1. When the box slot 31 completely accommodates the storage box 1, the push-and-disassemble component 2 is engaged with the storage box 1.

[0048] Among them, during the disassembly and assembly of the storage box 1, when installing the storage box 1, the box slot 31 can accommodate the storage box 1, and the storage box 1 is engaged with the push-and-disassemble component 2. When removing the storage box 1, the elastic component 33 provides a abutting force to the storage box 1 to separate the storage box 1 from the push-and-disassemble component 2. The abutting force provided by the elastic component 33 to the storage box 1 should be greater than the engaging force that can separate the storage box 1 from the push-and-disassemble component 2, so as to release the engagement between the storage box 1 and the push-and-disassemble component 2.

[0049] That is, when pressing the storage box 1 provided on the base 3, the installation of the storage box 1 can be achieved by the snap connection between the pressing and disassembling assembly 2 and the storage box 1 through pressing. The disassembly of the storage box 1 can be realized by the abutting force provided by the elastic component 33 to the storage box 1 to separate the storage box 1 from the pressing and disassembling assembly 2. This enables people to place auxiliary accessories including the temperature probe 4 in the storage box 1 for storage. People can take out the auxiliary accessories in the storage box 1 by pressing the storage box 1, and people can install the storage box 1 back by pressing the storage box 1, improving the user experience of consumers.

[0050] In a possible embodiment, the pressing and disassembling assembly 2 includes a locking member 21 and a return spring 22. The pressing and disassembling assembly 2 is snap-connected to the storage box 1 through the locking member 21. Specifically, a first locking structure 211 can be provided on the locking member 21, and a second locking structure 11 can be provided on the storage box 1. The first locking structure 211 can be locked with the second locking structure 11 to achieve the locking between the storage box 1 and the pressing and disassembling assembly 2. When an appropriate disassembly force is applied to the storage box 1 and the pressing and disassembling assembly 2, under the action of the disassembly force, the first locking structure 211 can be separated from the second locking structure 11.

[0051] Optionally, the first end of the return spring 22 can be provided on the side of the locking member 21 away from the storage box 1. The return spring 22 is elastically connected to the locking member 21. After the displacement of the locking member 21 ends, the return spring 22 can reset the locking member 21.

[0052] In a possible embodiment, the pressing and disassembling assembly 2 includes a guiding chute 23. The guiding chute 23 is provided on the base 3. The guiding chute 23 can be fixedly provided on the base 3 by connection means such as bolt connection or welding. The locking member 21 can be slidably provided in the guiding chute 23. The locking member 21 can be displaced in a certain direction forward or backward relative to the guiding chute 23, and the guiding chute 23 can support the locking member 21.

[0053] Wherein, the second end of the return spring 22 is provided on the guiding chute 23. The second end of the return spring 22 can be fixedly connected to the guiding chute 23. The return spring 22 can provide an elastic force to the locking member 21 to make the locking member 21 slide along the guiding chute 23 towards the box groove 31. The elastic force provided by the return spring 22 can change with the change of the sliding position of the locking member 21 on the guiding chute 23.

[0054] In a possible embodiment, the pressing and disassembling assembly 2 includes a limiting hook needle 24. The limiting hook needle 24 can be rotatably provided on the guiding chute 23. The limiting hook needle 24 can include a rotating end. The rotating end can be provided on the guiding chute 23 and can be rotatably connected to the guiding chute 23. Optionally, the limiting hook needle 24 can include a hook needle end 241.

[0055] Optionally, the locking member 21 may include a guiding groove 212. During the process of disassembling and assembling the storage box 1, the crochet end 241 always slides within the guiding groove 212.

[0056] Among them, optionally, the crochet end 241 may always slide within the guiding groove 212 along a fixed movement trajectory. The movement trajectory of the crochet end 241 may correspond to the displacement of the locking member 21 on the guiding sliding groove 23. Each trajectory point on the movement trajectory of the crochet end 241 may correspond to the displacement point of the locking member 21 on the guiding sliding groove 23 in a specific direction. When the locking member 21 is displaced to a certain position on the guiding sliding groove 23, the crochet end 241 can exactly slide to the position corresponding to the displacement position of the locking member 21. Since the crochet end 241 can only slide along this movement trajectory in a directional manner, the locking member 21 can only be displaced along the specific displacement direction of the locking member 21 corresponding to this movement trajectory, thereby limiting the displacement direction of the locking member 21.

[0057] It should be noted that the movement trajectory of the crochet end 241 in this application is only a reference trajectory. During the actual sliding process of the crochet end 241, the actual movement trajectory may deviate due to the jitter of the crochet end 241, but this deviation can be ignored and it can still be considered that the crochet end 241 rotates along the reference trajectory.

[0058] In a possible embodiment, the guiding groove 212 includes a first guiding groove 213 and a second guiding groove 216. Both the first guiding groove 213 and the second guiding groove 216 can be independent and complete sections of the groove body in the guiding groove 212.

[0059] Among them, when installing the storage box 1, the crochet end 241 slides in the first guiding groove 213 in a directional manner. When disassembling the storage box 1, the crochet end 241 slides in the second guiding groove 216 in a directional manner. The first guiding groove 213 and the second guiding groove 216 can be connected. When the crochet end 241 is located at the connection point between the first guiding groove 213 and the second guiding groove 216, pressing the disassembly and assembly component 2 is engaged with the storage box 1. At this time, in the state without applying an external pressing force, the position of the crochet end 241 remains unchanged, and the disassembly and assembly component 2 and the storage box 1 remain engaged. In the embodiment of this application, the crochet end 241 can slide within the guiding groove 212 in the counterclockwise direction. When adjusting the overall structure of the guiding groove 212, the crochet end 241 can also slide within the guiding groove 212 in the clockwise direction.

[0060] In a possible embodiment, there are a first position 214 and a second position 215 in the first guiding groove 213. The second position 215 can be located behind the first position 214 along the sliding direction of the crochet end 241.

[0061] When the crochet end 241 is located at the first position 214, the elastic member 331 within the elastic component 33 is in a natural and relaxed state. At this time, it can correspond to the usage state where the storage box 1 is not installed or the operator has just installed the storage box 1. When the operator starts to install the storage box 1, the crochet end 241 displaces from the first position 214 to the second position 215. When the crochet end 241 is located at the second position 215, the elastic member 331 within the elastic component 33 is in a compressed state, and the abutting force provided by the elastic component 33 to the storage box 1 reaches the maximum value when the crochet end 241 slides within the first guiding groove 213. The first position 214 can be located at the starting position of the first guiding groove 213, and the second position 215 can be located between the starting position and the ending position of the first guiding groove 213.

[0062] In a possible embodiment, there are a third position 217 and a fourth position 218 within the second guiding groove 216, and the third position 217 can be behind the fourth position 218 along the sliding direction of the crochet end 241.

[0063] When the crochet end 241 is located at the third position 217, the pressing and disassembling assembly 2 is engaged with the storage box 1. The third position 217 can be the connection point of the first guiding groove 213 and the second guiding groove 216. When the crochet end 241 moves to the third position 217, in the state without applying an external pressing force, the position of the crochet end 241 remains unchanged, and the pressing and disassembling assembly 2 and the storage box 1 remain engaged. When the crochet end 241 is located at the fourth position 218, the elastic member 331 within the elastic component 33 is in a compressed state, and the abutting force provided by the elastic component 33 to the storage box 1 reaches the maximum value when the crochet end 241 slides within the second guiding groove 216. The third position 217 can be located at the starting position of the second guiding groove 216, and the second position 215 can be located between the starting position and the ending position of the first guiding groove 213.

[0064] Optionally, the first position 214 of the first guiding groove 213 can be the ending position of the second guiding groove 216, and the first guiding groove 213 and the second guiding groove 216 can jointly form an irregular loop-shaped groove body connected end to end.

[0065] In a possible embodiment, the pressing and disassembling assembly 2 can include a surrounding plate 25 and a guiding baffle 26. The surrounding plate 25 can be used to enclose the movement area of the crochet end 241, so that the crochet end 241 can only slide within the area surrounded by the surrounding plate 25, and the guiding baffle 26 can provide a movement guiding function for the crochet end 241.

[0066] Optionally, the guiding baffle 26 may include a first plate end 261 and a second plate end 262. The surrounding plate 25 and the first plate end 261 may jointly form a first guiding groove 213, and the surrounding plate 25 and the second plate end 262 may jointly form a second guiding groove 216. Thus, the crochet end 241 can slide directionally within the first guiding groove 213 formed by the surrounding plate 25 and the first plate end 261 to achieve the installation of the storage box 1, and the crochet end 241 can slide directionally within the second guiding groove 216 formed by the surrounding plate 25 and the second plate end 262 to achieve the disassembly of the storage box 1.

[0067] In a possible embodiment, the first plate end 261 and the second plate end 262 jointly form a "V"-shaped plate. The opening part of the "V"-shaped plate can be regarded as the opening side of the "V"-shaped plate, and the tip part of the "V"-shaped plate can be regarded as the tip side of the "V"-shaped plate.

[0068] Optionally, the surrounding plate 25 may further include a "V"-shaped surrounding plate 251. The "V"-shaped surrounding plate 251 is located on the opening side of the "V"-shaped plate, and there is a spacing distance between the "V"-shaped surrounding plate 251 and the "V"-shaped plate that allows the crochet end 241 to slide through.

[0069] Optionally, the tip of the "V"-shaped surrounding plate 251 is arranged towards the first plate end 261. For Figure 4 example, Figure 4 the up, down, left, and right can be regarded as the up, down, left, and right in this paragraph. For example, the fourth position 218 is located at the lower right of the third position 217. This design enables, when the storage box 1 is pulled downward, that when the crochet end 241 slides from the third position 217 to the fourth position 218, the crochet end 241 lands on the "V"-shaped surrounding plate 251 along the movement direction of the storage box 1, specifically on the right side of the tip of the "V"-shaped surrounding plate 251, thus ensuring that during the disassembly process of the storage box 11, the crochet end 241 slides along the second guiding groove 216 instead of the first guiding groove 213.

[0070] In a possible embodiment, the guiding member includes a first locking structure 211, and the first locking structure 211 can be locked with the storage box 1. Specifically, the first locking structure 211 can be locked with the second locking structure 11 on the storage box 1.

[0071] Optionally, the guiding sliding groove 23 may include a groove opening 231, and the groove opening 231 can accommodate the first locking structure 211. During the disassembly and assembly process of the storage box 1, the first locking structure 211 can extend out of or retract into the groove opening 231, and when the first locking structure 211 retracts into the groove opening 231, the groove opening 231 can clamp the first locking structure 211.

[0072] Specifically, the first latching structure 211 can undergo elastic deformation, and some structures in the first latching structure 211 can be made of materials that can undergo elastic deformation. The size of the chute opening 231 can be smaller than the size of the first latching structure 211. Thus, when the first latching structure 211 retracts into the chute opening 231, the chute opening 231 clamps the first latching structure 211, making the latching between the first latching structure 211 and the second latching structure 11 more stable.

[0073] In a possible embodiment, the elastic component 33 includes at least two elastic members 331. At least two elastic members 331 are evenly dispersed on the side of the box groove 31 facing the box groove opening 32. Each elastic member 331 can abut against the storage box 1 to provide a abutting force to the storage box 1. The abutting forces provided by at least two elastic members 331 to the storage box 1 should be greater than the latching force that can separate the storage box 1 from the pressing and disassembling assembly 2, so as to release the latching between the storage box 1 and the pressing and disassembling assembly 2.

[0074] In other embodiments, the elastic component 33 can also include one elastic member 331, and this elastic member 331 can abut against the storage box 1 alone to provide a abutting force to the storage box 1.

[0075] In a possible embodiment, the elastic member 331 includes a spring, and the elastic component 33 can abut against the storage box 1 through the spring to provide a abutting force to the storage box 1.

[0076] In a possible embodiment, the storage box 1 is used to accommodate the temperature probe 4. The storage box 1 can be used to accommodate auxiliary accessories including the temperature probe 4, so as to store the auxiliary accessories and prevent people from not finding the auxiliary accessories when they need to use them.

[0077] It should be noted that the above-mentioned sequence of embodiments of the present application is only for description and does not represent the superiority or inferiority of the embodiments. And the above describes specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in a different order than in the embodiments and still achieve the desired result. Additionally, the processes depicted in the drawings do not necessarily require the specific order or sequential order shown to achieve the desired result. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0078] Each embodiment in this specification is described in a progressive manner. The same or similar parts among the embodiments can be referred to each other, and the key points of each embodiment are the differences from other embodiments. In particular, for the device embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can refer to the partial description of the method embodiments.

Claims

1. A kitchen utensil provided with a push-type storage box, characterized in that, It includes a storage box, a pressing disassembly and assembly component, and a base; A box groove is provided on the base; the shape of the storage box corresponds to the shape of the box groove, and the storage box is detachably arranged in the box groove; An elastic component is arranged on one side of the box groove facing the opening of the box groove; The elastic component can abut against the storage box to provide a abutting force to the storage box; The pressing disassembly and assembly component is arranged on the base, and the pressing disassembly and assembly component can be engaged with the storage box; During the disassembly and assembly process of the storage box, when installing the storage box, the box groove accommodates the storage box, and the storage box is engaged with the pressing disassembly and assembly component; when removing the storage box, the elastic component provides the abutting force to the storage box so that the storage box is separated from the pressing disassembly and assembly component.

2. The kitchen utensil provided with a push-type storage box according to claim 1, characterized in that, The pressing disassembly and assembly component includes a locking part and a return spring; The pressing disassembly and assembly component is engaged with the storage box through the locking part; the first end of the return spring is arranged on the side of the locking part away from the storage box.

3. The kitchenware provided with a push-type storage box according to claim 2, wherein, The pressing disassembly and assembly component includes a guiding chute; The guiding chute is arranged on the base; the locking part is slidably arranged in the guiding chute; The second end of the return spring is arranged on the guiding chute; the return spring can provide an elastic force to the locking part to make the locking part slide along the guiding chute towards the box groove.

4. The kitchenware provided with a push-type storage box according to claim 3, characterized in that, The pressing disassembly and assembly component includes a limiting hook needle; the limiting hook needle is rotatably arranged on the guiding chute; the limiting hook needle includes a hook needle end; The locking part includes a guiding groove; during the process of disassembling and assembling the storage box, the hook needle end always slides in the guiding groove.

5. The kitchen utensil provided with a push-type storage box according to claim 4, characterized in that, The guiding groove includes a first guiding groove and a second guiding groove; When installing the storage box, the hook needle end slides directionally in the first guiding groove; when removing the storage box, the hook needle end slides directionally in the second guiding groove.

6. The kitchen utensil provided with a push-type storage box according to claim 5, characterized in that, There are a first position and a second position in the first guiding groove; the second position is behind the first position along the sliding direction of the hook needle end; When the hook needle end is located at the first position, the elastic member in the elastic component is in a natural relaxation state; when the hook needle end is located at the second position, the elastic member in the elastic component is in a compressed state, and the abutting force provided by the elastic component to the storage box reaches the maximum value when the hook needle end slides in the first guiding groove.

7. The kitchenware provided with a push-type storage box according to claim 5, characterized in that, There are a third position and a fourth position in the second guiding groove; the third position is behind the fourth position along the sliding direction of the hook needle end; When the hook needle end is located at the third position, the pressing disassembly and assembly component is engaged with the storage box; when the hook needle end is located at the fourth position, the elastic member in the elastic component is in a compressed state, and the abutting force provided by the elastic component to the storage box reaches the maximum value when the hook needle end slides in the second guiding groove.

8. The kitchen utensil provided with a push-type storage box according to claim 5, characterized in that, The pressing disassembly and assembly component includes a surrounding plate and a guiding baffle; The guiding baffle includes a first plate end and a second plate end; the surrounding plate and the first plate end together form the first guiding groove, and the surrounding plate and the second plate end together form the second guiding groove.

9. The kitchen utensil provided with a push-type storage box according to claim 8, characterized in that, The first plate end and the second plate end together form a "V"-shaped plate; The surrounding plate includes a V-shaped surrounding plate; the V-shaped surrounding plate is located on the opening side of the "V"-shaped plate; The tip of the V-shaped surrounding plate is arranged towards the first plate end.

10. The kitchen utensil provided with a push-type storage box according to claim 3, characterized in that, The guiding member includes a first locking structure; the first locking structure can be locked with the storage box; The guiding chute includes a chute opening; during the disassembly and assembly of the storage box, the first locking structure can extend out of or retract into the chute opening from the chute opening; Moreover, when the first locking structure retracts into the chute opening, the chute opening can clamp the first locking structure.

11. The kitchenware provided with a push-type storage box according to claim 1, characterized in that, The elastic component includes at least two elastic members; The at least two elastic members are evenly dispersed on one side of the box groove facing the box groove opening.

12. The kitchen utensil provided with a push-type storage box according to claim 11, characterized in that, The elastic member includes a spring.

13. The kitchen utensil provided with a push-type storage box according to claim 1, wherein, The storage box is used to accommodate a temperature probe.