Handle and cooking utensil
The magnetic handle design addresses the challenge of tool-dependent installation and removal in cooking utensils by enabling tool-free assembly and disassembly, improving usability and reducing storage needs.
Patent Information
- Application Number
- CN202422293347.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The installation and disassembly of existing cooking utensil handles is inconvenient, which leads to large space for transportation and storage, and the screw connection is easy to slip, affecting the convenience of use and life.
The handle designed with the principle of magnetic adsorption is designed, and the removable connection between the first main body part and the second main body part is achieved convenient installation and disassembly by changing the magnetic pole of the magnetic part. Combined with the structural design of the magnetic permeable parts and the partitions, stability and compatibility are enhanced.
It realizes easy installation and disassembly of the handle without additional tools, reduces the risk of component damage, improves the compatibility and service life of the handle, and saves space.
Smart Images

Figure CN223095421U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of kitchen utensils, and particularly relates to a handle and a cooking appliance. Background Art
[0002] Cooking appliances such as frying pans are commonly used kitchen utensils in people's daily lives. The handle is usually installed on the pot body by screws. The installation and disassembly of the handle require additional tools, and the operation is relatively troublesome. Moreover, problems such as slipping of the screw teeth are likely to occur during repeated disassembly and assembly of the screws. Therefore, during transportation, use, and storage, the handle is usually not disassembled. However, this results in a relatively large overall volume of the cooking appliance, occupying a large amount of space, and is not convenient for transportation and storage. Utility Model Content
[0003] In view of this, the present application provides a handle and a cooking appliance to facilitate solving the problem of inconvenient installation and disassembly of the handle in the prior art.
[0004] In a first aspect, an embodiment of the present application provides a handle, which includes:
[0005] A first main body portion;
[0006] A second main body portion for connecting with the first main body portion;
[0007] Wherein, the second main body portion includes a first body portion and a magnetic member. The first body portion includes a first magnetic conductive member, a second magnetic conductive member, and a partition member. The first magnetic conductive member, the second magnetic conductive member, and the partition member enclose an accommodation cavity, and the partition member is located between the first magnetic conductive member and the second magnetic conductive member. The magnetic member has a first magnetic pole and a second magnetic pole with opposite magnetic polarities and is located in the accommodation cavity. The magnetic member can rotate relative to the first body portion. When one of the first magnetic pole and the second magnetic pole is located at the corresponding position of the first magnetic conductive member, and the other is located at the corresponding position of the second magnetic conductive member, the magnetic member is magnetically adsorbed and connected to the first main body portion. When the first magnetic pole is simultaneously located at the corresponding positions of the first magnetic conductive member and the second magnetic conductive member, and the second magnetic pole is simultaneously located at the corresponding positions of the first magnetic conductive member and the second magnetic conductive member, the magnetic member is disengaged from the magnetic adsorption connection with the first main body portion.
[0008] By adopting the solution provided by the embodiment of the present application, detachable connection of the handle can be realized. The installation and disassembly of the first main body portion and the second main body portion using the principle of magnetic adsorption are more convenient during use, and additional tools are not required for installation and disassembly, and the disassembly and assembly difficulty is relatively low. At the same time, during use, the second main body portion can also match different first main body portions, improving the compatibility of the handle. Multiple pots with a first main body portion can be operated with a single second main body portion, which better meets the actual use requirements.
[0009] In a possible implementation, the first magnetic member has a first end and a second end, the second magnetic member has a third end and a fourth end, the first end is located on a side of the first magnetic member close to the third end, the second end is located on a side of the first magnetic member close to the fourth end, the separator includes a first separator portion and a second separator portion, the first separator portion is located between the first end and the third end, and the second separator portion is located between the second end and the fourth end.
[0010] Through such a design, the first magnetic member and the second magnetic member can be separated, thereby reducing the possibility of magnetic field transmission between the first magnetic member and the second magnetic member, so as to improve the stability when the first main body portion and the magnetic member are magnetically adsorbed and connected, and better meet the actual use requirements.
[0011] In a possible implementation, the accommodation cavity penetrates through an end of the first main body portion away from the first main body, the second main body portion further includes a second main body portion, the second main body portion is located at an end of the first main body portion away from the first main body and is fixedly connected to the magnetic member relatively, the second main body portion can rotate relative to the first main body portion, and when the second main body portion rotates, the second main body portion can drive the magnetic member to rotate relative to the first main body portion.
[0012] By providing the second main body portion, it is convenient for the user to drive the magnetic member to rotate through the second main body portion, which is more convenient during operation. Moreover, by providing the second main body portion, a relatively closed cavity can be formed with the first main body portion to improve the sealing performance of the second main body portion, reduce the possibility of the magnetic member being exposed, thereby reducing the influence of external factors on the magnetic member and reducing the possibility of the magnetic member being damaged or failing, which is beneficial to extending the service life of the handle and better meets the actual use requirements.
[0013] In a possible implementation, in the magnetic member and the second main body portion, one is provided with a first recess portion, and the other is provided with a first protrusion portion, and at least a part of the first protrusion portion extends into the first recess portion.
[0014] Through such a design, the contact area between the magnetic member and the second main body portion can be increased, thereby improving the connection stability between the magnetic member and the second main body portion, and making it more convenient for the operator to drive the magnetic member to rotate through the second main body portion, so as to facilitate the installation and disassembly of the second main body portion.
[0015] In a possible implementation, the first recess portion is provided on the magnetic member, the first protrusion portion is provided on the second main body portion, along the radial direction of the magnetic member, opposite ends of the first recess portion respectively penetrate through the magnetic member, and the first magnetic pole and the second magnetic pole are respectively located on opposite sides of the first recess portion.
[0016] Such a design can make it more convenient for the magnetic member to be connected to the second main body portion. Both opposite ends of the first recessed portion penetrate through the magnetic member, which can reduce the requirement for the matching accuracy between the first protruding portion and the first recessed portion. In the extending direction of the first recessed portion, even if there is a certain displacement in the position of the first protruding portion, it can still cooperate with the first recessed portion.
[0017] In a possible implementation manner, in the first main body portion and the second main body portion, one is provided with a second protruding portion, and the other is provided with a second recessed portion, and at least a part of the second protruding portion can extend into the second recessed portion.
[0018] Through such a design, the contact area between the first main body portion and the second main body portion can be increased, thereby improving the connection stability between the first main body portion and the second main body portion, which is more in line with the actual use requirements.
[0019] In a possible implementation manner, in the first main body portion and the second main body portion, one is provided with at least one third protruding portion, and the other is provided with at least one third recessed portion, and at least a part of the third protruding portion can extend into the corresponding third recessed portion.
[0020] Through such a design, the contact area between the first main body portion and the second main body portion can be increased, thereby improving the connection stability between the first main body portion and the second main body portion. At the same time, when the first main body portion and the second main body portion are connected, the second protruding portion cooperates with the second recessed portion, and the third protruding portion cooperates with the third recessed portion, which can be used to limit the relative rotation between the first main body portion and the second main body portion, thereby improving the connection stability between the first main body portion and the second main body portion.
[0021] In a possible implementation manner, the first main body portion is provided with the second protruding portion and at least two third protruding portions, and each of the third protruding portions is arranged along the circumferential direction of the second protruding portion and is connected to the second protruding portion. The second main body portion is provided with the second recessed portion and at least two third recessed portions, and each of the third recessed portions is arranged along the circumferential direction of the second recessed portion and is communicated with the second recessed portion.
[0022] Through such a design, it is beneficial to increase the contact area between the first main body portion and the second main body portion. At the same time, the third main body portion can also play a role in anti-fooling and limiting positions. While improving the connection stability between the first main body portion and the second main body portion, it can also be used to limit the possibility of relative rotation between the first main body portion and the second main body portion, thereby reducing the possibility of relative rotation between the first main body portion and the second main body portion during use and resulting in detachment, which is more in line with the actual use requirements.
[0023] In a possible implementation, the handle further includes a buffer member located between the first main body portion and the second main body portion.
[0024] The buffer member is used to reduce the possibility of direct contact between the first main body portion and the second main body portion, thereby reducing the possibility of collision and friction between the first main body portion and the second main body portion during installation and disassembly, which may cause damage to the first main body portion and / or the second main body portion. When one end of the first main body portion and the second main body portion close to each other is damaged, it will affect the connection stability between the first main body portion and the second main body portion. By providing the buffer member, the possibility of damage to the first main body portion and / or the second main body portion can be reduced, which is beneficial to extending the service life of the handle and better meeting the actual usage requirements.
[0025] The present application further provides a cooking appliance, which includes a pot body and a handle, and the handle is the handle described in any one of the above;
[0026] The first main body portion of the handle is installed on the pot body, and the second main body portion is detachably connected to the first main body portion.
[0027] The present application provides a handle and a cooking appliance. The handle includes a first main body portion and a second main body portion that are detachably connected. The second main body portion includes a first body portion and a magnetic member. The first body portion includes a first magnetic conductive member, a second magnetic conductive member, and a partition member that are used to enclose a receiving cavity, and the partition member is located between the first magnetic conductive member and the second magnetic conductive member. The magnetic member is located in the receiving cavity. When the magnetic member rotates relative to the first body portion, the positions of the first magnetic pole and the second magnetic pole relative to the first magnetic conductive member and the second magnetic conductive member change, so that the magnetic field of the magnetic member can be transmitted outward or along the magnetic conductive member, so that the second main body portion can be magnetically adsorbed to or detached from the first main body portion through the magnetic member. Through such a design, the handle can be easily installed and disassembled, save space at the same time, and improve the versatility of the handle.
[0028] It should be understood that the above general description and the following detailed description are only exemplary and do not limit the present application. Description of the Drawings
[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0030] Figure 1 Schematic diagram of the handle provided by the present application;
[0031] Figure 2Exploded view of the handle cross-section provided by this application;
[0032] Figure 3 Schematic diagram of the first main body part provided by this application;
[0033] Figure 4 Schematic diagram of the handle in the first state provided by this application;
[0034] Figure 5 Schematic diagram of the handle in the second state provided by this application;
[0035] Figure 6 Schematic diagram of the magnetic part provided by this application;
[0036] Figure 7 Schematic diagram of the second main body part provided by this application;
[0037] Figure 8 Schematic diagram of the first main body provided by this application;
[0038] Figure 9 Schematic diagram of the second main body provided by this application.
[0039] Reference numerals:
[0040] 1 - First main body;
[0041] 11 - Second convex part;
[0042] 12 - Third convex part;
[0043] 2 - Second main body;
[0044] 21 - First main body part;
[0045] 211 - First magnetic conductive part;
[0046] 211a - First end;
[0047] 211b - Second end;
[0048] 212 - Second magnetic conductive part;
[0049] 212a - Third end;
[0050] 212b - Fourth end;
[0051] 213 - Partition;
[0052] 213a - First partition part;
[0053] 213b - Second partition part;
[0054] 214 - Accommodation cavity;
[0055] 215 - Second recessed portion;
[0056] 216 - Third recessed portion;
[0057] 22 - Magnetic member;
[0058] 221 - First magnetic pole;
[0059] 222 - Second magnetic pole;
[0060] 223 - First recessed portion;
[0061] 23 - Second main body portion;
[0062] 231 - First protrusion;
[0063] 232 - Handle;
[0064] 3 - Buffer member;
[0065] 4 - Cooker body. Detailed implementation manners
[0066] For a better understanding of the technical solutions of the present application, the embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0067] It should be clear that the described embodiments are only a part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0068] The terms used in the embodiments of the present application are only for the purpose of describing specific embodiments, and are not intended to limit the present application. The singular forms of "a", "the" and "said" used in the embodiments of the present application and the appended claims are also intended to include the plural forms, unless the context clearly indicates otherwise.
[0069] It should be understood that the term "and / or" used herein is only a description of the associated relationship of the associated objects, indicating that there can be three relationships. For example, a and / or b can represent: a exists alone, a and b exist simultaneously, and b exists alone. In addition, the character " / " herein generally represents an "or" relationship between the associated objects before and after.
[0070] As Figure 1 shown, the embodiments of the present application provide a handle, which includes a first main body portion 1 and a second main body portion 2 that are detachably connected. Among them, the first main body portion 1 can be a handle base for connecting to the cooker body 4 of the cooking appliance, and the second main body portion 2 can be a handle body for being held by the user after being connected to the first main body portion 1. As Figure 2As shown, the second main body portion 2 includes a first main body portion 21 and a magnetic member 22. As Figure 3 shown, the first main body portion 21 includes a first magnetic conductive member 211, a second magnetic conductive member 212, and a partition member 213. The first magnetic conductive member 211 and the second magnetic conductive member 212 are made of magnetic conductive materials. For example, the materials of the first magnetic conductive member 211 and the second magnetic conductive member 212 can be iron-silicon alloy, pure iron, low-carbon steel, silicon steel sheet, silicon steel strip, permalloy, ferrite, etc. The partition member 213 is made of non-magnetic conductive material. For example, the material of the partition member 213 can be copper, aluminum, zinc, lead, tin, gold, silver, platinum, etc. The first magnetic conductive member 211, the second magnetic conductive member 212, and the partition member 213 can enclose an accommodation cavity 214. The magnetic member 22 is located in the accommodation cavity 214 and can rotate relative to the first main body portion 21. The first magnetic conductive member 211, the second magnetic conductive member 212, and the partition member 213 are arranged along the circumferential direction of the magnetic member 22, and the partition member 213 is located between the first magnetic conductive member 211 and the second magnetic conductive member 212. The magnetic member 22 includes a first magnetic pole 221 and a second magnetic pole 222. The polarities of the first magnetic pole 221 and the second magnetic pole 222 are opposite. When the magnetic member 22 rotates relative to the first main body portion 1, the relative positions of the first magnetic pole 221 and the second magnetic pole 222 with respect to the first magnetic conductive member 211, the second magnetic conductive member 212, and the partition member 213 change, which will affect the magnetic field distribution of the magnetic member 22. Taking the first magnetic pole 221 as the N pole and the second magnetic pole 222 as the S pole as an example, Figure 4 and Figure 5 the dotted lines and arrows in represent the external magnetic induction lines and directions, and can also be used to represent the magnetic field. The external magnetic induction lines usually start from the N pole and point to the S pole. As Figure 4 shown, at this time, the handle is in the first state, that is, the first main body portion 1 and the second main body portion 2 are magnetically adsorbed and connected through the magnetic member 22. When the magnetic member 22 moves to a position where one of the first magnetic pole 221 and the second magnetic pole 222 is located at the corresponding position of the first magnetic conductive member 211 and the other is located at the corresponding position of the second magnetic conductive member 212, that is, the first magnetic pole 221 corresponds to the first magnetic conductive member 211 and the second magnetic pole 222 corresponds to the second magnetic conductive member 212, or, the first magnetic pole 221 corresponds to the second magnetic conductive member 212 and the second magnetic pole 222 corresponds to the first magnetic conductive member 211. For example, when the magnetic member 22 is in Figure 4When in the position state shown, since there is a separator 213 between the first magnetic member 211 and the second magnetic member 212, the magnetic fields emitted by the first magnetic pole 221 and the second magnetic pole 222 cannot be transmitted along the magnetic member to the other magnetic pole of the magnetic member 22. That is, the magnetic field emitted by the first magnetic pole 221 cannot be transmitted to the second magnetic pole 222 through the magnetic member, and the magnetic field emitted by the second magnetic pole 222 cannot be transmitted to the first magnetic pole 221 through the magnetic member. A closed loop for transmitting the magnetic field cannot be formed among the first magnetic pole 221, the second magnetic pole 222, the first magnetic member 211, and the second magnetic member 212. Therefore, the magnetic field of the magnetic member 22 can diffuse outward, so as to be used for magnetic adsorption connection with the first main body 1. The material of the first main body 1 can be a magnetic material, that is, a material that can be magnetically adsorbed by the magnetic member 22, so that the first main body 1 can be magnetically adsorbed and connected with the magnetic member 22, thereby connecting the second main body 2 with the first main body 1. When both the first magnetic pole 221 and the second magnetic pole 222 are located at the corresponding positions of the first magnetic member 211 and the second magnetic member 212, that is, as Figure 5 shown, at this time, the handle is in the second state, and the first main body 1 and the second main body 2 are in a state of releasing the magnetic adsorption connection. By rotating the magnetic member 22 to change the positions of the first magnetic pole 221 and the second magnetic pole 222, the first magnetic pole 221 is simultaneously located at the corresponding positions of the first magnetic member 211 and the second magnetic member 212, so that the first magnetic pole 221 can simultaneously correspond to the first magnetic member 211 and the second magnetic member 212, and the second magnetic pole 222 is simultaneously located at the corresponding positions of the first magnetic member 211 and the second magnetic member 212, and the second magnetic pole 222 can simultaneously correspond to the first magnetic member 211 and the second magnetic member 212. At this time, the magnetic field emitted by the first magnetic pole 221 can be transmitted to the second magnetic pole 222 through the magnetic member, and the magnetic field emitted by the second magnetic pole 222 can be transmitted to the first magnetic pole 221 through the magnetic member. That is, the first magnetic pole 221, the first magnetic member 211, and the second magnetic pole 222 can form a closed loop for magnetic field transmission. Since the first magnetic pole 221, the second magnetic member 212, and the second magnetic pole 222 can form a closed loop circuit, therefore, the magnetic field of the magnetic member will be transmitted along the Figure 5 closed loop shown in, so as to reduce the magnetic field leakage. Since in this state, the magnetic field of the magnetic member 22 is transmitted within the closed magnetic circuit, reducing the possibility of magnetic field outward expansion. Therefore, the magnetic member 22 releases the magnetic adsorption connection with the first main body 1, enabling the second main body 2 to be detached from the first main body 1. During use, the connection and disconnection between the first main body 1 and the second main body 2 can be achieved by rotating the magnetic member 22.
[0071] By adopting the solution provided in the embodiments of the present application, detachable connection of the handle can be achieved. Installing and disassembling the first main body 1 and the second main body 2 using the principle of magnetic adsorption is convenient during use. No additional tooling assistance is required during installation and disassembly, and the difficulty of disassembly and assembly is relatively low. At the same time, during use, the second main body 2 can also match different first main bodies 1, improving the compatibility of the handle. Multiple cookware with the first main body 1 can be operated with a single second main body 2, which better meets the actual usage requirements.
[0072] When the handle is connected using connectors such as screws, additional tooling is required for operation during installation and disassembly. When repeated installation and disassembly are needed, the operation is rather inconvenient. Moreover, during use, problems such as thread stripping and over-tightening are likely to occur with connectors like screws, resulting in the handle being unusable. The solution provided in the embodiments of the present application uses magnetic adsorption connection, which is not only convenient to operate but also has a lower possibility of damage to components during disassembly and assembly. Therefore, the service life of the handle is relatively long. Additionally, when using a connection solution with connectors such as screws, high requirements are placed on the positional accuracy of the connectors and the matching degree of the structure. Generally, one second main body 2 can only correspond to one first main body 1. However, the magnetic adsorption connection method adopted in the embodiments of the present application has relatively lower requirements for the relative position between the first main body 1 and the second main body 2 and the matching degree of the structure. Even if the first main body 1 does not directly contact the magnetic part 22, magnetic adsorption connection can still be achieved. Therefore, the first main body 1 can be provided on the pot bodies 4 of multiple cooking containers respectively, and one second main body 2 can be matched with multiple pot bodies 4, which is beneficial to improving the generalization of the handle and can greatly save the number of handles and the storage space required.
[0073] Compared with the solution of directly setting magnets on the first main body 1 and the second main body 2, when directly setting magnets on the first main body 1 and the second main body 2, a relatively large external force needs to be applied to the second main body 2 during disassembly to overcome the attraction between the first main body 1 and the second main body 2, which is rather laborious during operation. The solution provided in the embodiments of the present application can adjust the relative position between the magnetic part 22 and the magnetic conductive part to reduce the attraction between the magnetic part and the first main body 1, making disassembly more convenient and labor-saving.
[0074] Such as Figure 3As shown, in a possible implementation, the first magnetic member 211 has a first end 211a and a second end 211b, and the second magnetic member 212 has a third end 212a and a fourth end 212b. The first magnetic member 211 and the second magnetic member 212 can be approximated as an arch structure, that is, the first magnetic member 211 and the second magnetic member 212 are respectively provided with cavities and are arranged opposite to each other to form a receiving cavity 214. The outer sides of the first magnetic member 211 and the second magnetic member 212 can be arc-shaped, square, etc. The shapes of the first magnetic member 211 and the second magnetic member 212 include but are not limited to arc arch structures, square arch structures, etc. The outer sides of the first magnetic member 211 and the second magnetic member 212 can be designed according to ergonomics to form a structure that is convenient for the user to hold. The separator 213 includes a first separator portion 213a and a second separator portion 213b. The arched first magnetic member 211 and the second magnetic member 212 are arranged opposite to each other. The first end 211a of the first magnetic member 211 corresponds to the third end 212a of the second magnetic member 212, and the second end 211b of the first magnetic member 211 corresponds to the fourth end 212b of the second magnetic member 212. At the same time, the first separator portion 213a is located between the first end 211a and the third end 212a, and the second separator portion 213b is located between the second end 211b and the fourth end 212b. By providing the first separator portion 213a and the second separator portion 213b, it is possible to block the transmission of the magnetic field between the first magnetic member 211 and the second magnetic member 212.
[0075] Through such a design, the first magnetic member 211 and the second magnetic member 212 can be separated, thereby reducing the possibility of the magnetic field transmitting between the first magnetic member 211 and the second magnetic member 212, improving the stability when the first main body portion 1 and the magnetic member 22 are magnetically adsorbed and connected, and better meeting the actual use requirements.
[0076] As Figure 2As shown, in a possible implementation, the accommodation cavity 214 penetrates through the first end 211a of the first body portion 21 away from the first main body portion 1, that is, the first body portion 21 has an opening at one end away from the first main body portion 1, and the opening communicates with the accommodation cavity 214. The magnetic member 22 can be placed into the accommodation cavity 214 through the opening. The second main body portion 2 may further include a second body portion 23. The second body portion 23 is located at the end of the first body portion 21 away from the first main body portion 1 and is fixedly connected to the magnetic member 22 relatively. The connection methods include but are not limited to bonding, snap connection, threaded connection, etc., as long as the second body portion 23 can drive the magnetic member 22 to move when moving. The second body portion 23 can rotate relative to the first body portion 21. When the second body portion 23 rotates relative to the first body portion 21, the second body portion 23 can drive the magnetic member 22 to rotate relative to the first body portion 21. The second body portion 23 can be a structure such as a twist cap. A handle 232 and other structures can be provided at one end of the second body portion 23 away from the first body portion 21 to facilitate the user's grip.
[0077] By providing the second body portion 23, it is convenient for the user to drive the magnetic member 22 to rotate through the second body portion 23, which is more convenient during operation. Moreover, by providing the second body portion 23, a relatively closed cavity can be formed with the first body portion 21 to improve the sealing performance of the second main body portion 2, reduce the possibility of the magnetic member 22 being exposed, thereby reducing the influence of external factors on the magnetic member 22 and reducing the possibility of damage and failure of the magnetic member 22, which is beneficial to extending the service life of the handle and more conforming to the actual use requirements.
[0078] As Figure 6 and Figure 7 As shown, in a possible implementation, in the magnetic member 22 and the second body portion 23, one is provided with a first recess 223, and the other is provided with a first protrusion 231. When the second body portion 23 is engaged with the magnetic member 22, at least a part of the first protrusion 231 can extend into the first recess 223. The structures of the first protrusion 231 and the first recess 223 can correspond. The cross-sectional shapes of the first protrusion 231 and the first recess 223 include but are not limited to circular, triangular, rectangular, polygonal, etc.
[0079] Through such a design, the contact area between the magnetic member 22 and the second body portion 23 can be increased, thereby improving the connection stability between the magnetic member 22 and the second body portion 23, and making it more convenient for the operator to drive the magnetic member 22 to rotate through the second body portion 23, so as to facilitate the installation and disassembly of the second main body portion 2.
[0080] In a possible implementation, the cross-sectional shapes of the first protrusion 231 and the first recess 223 are both rectangular. Such a design can reduce the possibility of relative rotation between the second body portion 23 and the magnetic member 22, and at the same time reduce the processing difficulty, which is more in line with the actual usage requirements. During assembly, an adhesive such as glue can be provided between the second body portion 23 and the magnetic member 22 to fixedly connect the second body portion 23 and the magnetic member 22, further reducing the possibility of relative movement between the second body portion 23 and the magnetic member 22.
[0081] As Figure 6 and Figure 7 shown, in a possible implementation, the first recess 223 is provided on the magnetic member 22, and the first protrusion 231 is provided on the second body portion 23. Along the radial direction of the magnetic member 22, the opposite ends of the first recess 223 respectively penetrate through the magnetic member 22, and the first magnetic pole 221 and the second magnetic pole 222 are respectively located on the opposite sides of the first recess 223.
[0082] Through such a design, it is more convenient to connect the magnetic member 22 and the second body portion 23. The opposite ends of the first recess 223 both penetrate through the magnetic member 22, which can reduce the requirement for the matching accuracy between the first protrusion 231 and the first recess 223. In the extending direction of the first recess 223, even if there is a certain displacement in the position of the first protrusion 231, it can still cooperate with the first recess 223.
[0083] The second body portion 23 is usually a twist cap structure. Along its own thickness direction (usually approximately the length direction of the handle), the size of the second body portion 23 is relatively small. Therefore, when the first recess 223 is provided on the second body portion 23, the depth of the first recess 223 is relatively shallow, and when cooperating with the first protrusion 231 provided on the magnetic member 22, the contact area is relatively small. When the first protrusion 231 is provided on the second body portion 23, the size of the first protrusion 231 can be set according to requirements, and a first recess 223 that can match the size of the first protrusion 231 is provided on the magnetic member 22. The thickness of the second body portion 23 does not limit the size of the first protrusion 231 in the thickness direction after being provided on the second body portion 23. Therefore, it is beneficial to increase the contact area between the second body portion 23 and the magnetic member 22, improve the stability of their cooperation, and be more in line with the actual usage requirements.
[0084] As Figure 8 and Figure 9As shown, in a possible implementation, in the first main body portion 1 and the second main body portion 2, one is provided with a second protruding portion 11, and the other is provided with a second recessed portion 215. At least a part of the second protruding portion 11 can extend into the second recessed portion 215 so as to connect the first main body portion 1 and the second main body portion 2. The second protruding portion 11 or the second recessed portion 215 can be provided on the first main body portion 21 of the second main body portion 2.
[0085] Through such a design, the contact area between the first main body portion 1 and the second main body portion 2 can be increased, thereby improving the connection stability between the first main body portion 1 and the second main body portion 2, which better meets the actual usage requirements.
[0086] As Figure 8 and Figure 9 shown, in a possible implementation, in the first main body portion 1 and the second main body portion 2, one is provided with at least one third protruding portion 12, and the other is provided with at least one third recessed portion 216. At least a part of the third protruding portion 12 can extend into the third recessed portion 216 so as to connect the first main body portion 1 and the second main body portion 2. The third recessed portion 216 or the third protruding portion 12 can be provided on the first main body portion 21 of the second main body portion 2.
[0087] Through such a design, the contact area between the first main body portion 1 and the second main body portion 2 can be increased, thereby improving the connection stability between the first main body portion 1 and the second main body portion 2. At the same time, when the first main body portion 1 and the second main body portion 2 are connected, the second protruding portion 11 cooperates with the second recessed portion 215, and the third protruding portion 12 cooperates with the third recessed portion 216, which can be used to limit the relative rotation between the first main body portion 1 and the second main body portion 2, thereby improving the connection stability between the first main body portion 1 and the second main body portion 2.
[0088] In a possible implementation, as Figure 8 shown, the first main body portion 1 is provided with a second protruding portion 11 and at least two third protruding portions 12. The third protruding portions 12 are arranged along the circumferential direction of the second protruding portion 11 and are connected to the second protruding portion 11. As Figure 9 shown, the second main body portion 2 is provided with a second recessed portion 215 and at least two third recessed portions 216. The third recessed portions 216 are arranged along the circumferential direction of the second recessed portion 215 and are communicated with the third recessed portion 216.
[0089] Such a design is conducive to increasing the contact area between the first main body portion 1 and the second main body portion 2. At the same time, the third main body portion can also play a role in anti-fooling and limiting positions. While improving the connection stability between the first main body portion 1 and the second main body portion 2, it can also be used to limit the possibility of relative rotation between the first main body portion 1 and the second main body portion 2, thereby reducing the possibility of relative rotation between the first main body portion 1 and the second main body portion 2 during use, resulting in detachment, and better meeting the actual use requirements.
[0090] In a possible implementation manner, the first main body portion 1 is provided with three third protrusion portions 12, and the third protrusion portions 12 are arranged at equal intervals along the circumferential direction of the second protrusion portion 11. The second main body portion 2 is provided with three third recessed portions 216, and the third recessed portions 216 are arranged at equal intervals along the circumferential direction of the second recessed portion 215.
[0091] As Figure 2 shown, in a possible implementation manner, the handle further includes a buffer member 3, and the buffer member 3 is located between the first main body portion 1 and the second main body portion 2. The buffer member 3 can be components such as a gasket or a liner. The buffer member 3 can be connected to the first main body portion 1 or the second main body portion 2.
[0092] The buffer member 3 is used to reduce the possibility of direct contact between the first main body portion 1 and the second main body portion 2, thereby reducing the possibility of bumping and friction between the first main body portion 1 and the second main body portion 2 during installation and disassembly, resulting in damage to the first main body portion 1 and / or the second main body portion 2. When one end of the first main body portion 1 and the second main body portion 2 that are close to each other is damaged, it will affect the connection stability between the first main body portion 1 and the second main body portion 2. By providing the buffer member 3, the possibility of damage to the first main body portion 1 and / or the second main body portion 2 can be reduced, which is conducive to extending the service life of the handle and better meeting the actual use requirements.
[0093] Based on the handle involved in the above embodiments, the embodiments of the present application further provide a cooking appliance, which may include but is not limited to a frying pan, a steamer, etc. The cooking appliance includes a pot body 4 and a handle. The first main body portion 1 of the handle is installed on the pot body 4, and the second main body portion 2 is detachably connected to the first main body portion 1. Since the handle has the above technical effects, the cooking appliance including the handle also has corresponding technical effects, which will not be elaborated here.
[0094] In the solution provided by the embodiments of the present application, by providing a first magnetic member 211, a second magnetic member 212, a partition member 213, and a magnetic member 22 in the second main body portion 2, by changing the relative positions of the magnetic poles of the magnetic member 22 and the magnetic conductive member, the magnetic field can be diffused outward or form a loop. When the magnetic field diffuses outward, the first main body portion 1 can be magnetically adsorbed and connected to the magnetic member 22. When the magnetic field is transmitted within the loop formed by the magnetic conductive member and the magnetic member 22, the magnetic member 22 cannot be magnetically adsorbed and connected to the first main body portion 1.
[0095] In a possible implementation manner, when it is necessary to connect the first main body portion 1 and the second main body portion 2, the openings at both ends of the first recessed portion 223 of the magnetic member 22 can be aligned with the partition member 213 to reduce the possibility of the magnetic fields of the first magnetic pole 221 and the second magnetic pole 222 transmitting to each other, so that the magnetic field of the magnetic member 22 diffuses outward and is transmitted. When it is necessary to disassemble the first main body portion 1 and the second main body portion 2, by driving the magnetic member 22 to rotate, so that both the first magnetic pole 221 and the second magnetic pole 222 are simultaneously located within the corresponding range of the magnetic conductive member, so that a loop can be formed between the first magnetic pole 221, the second magnetic pole 222, and the magnetic conductive member, and the magnetic field is transmitted within the loop. Usually, by rotating to make the openings at both ends of the first recessed portion 223 of the magnetic member 22 misaligned with the partition member 213, the rotation angle of the magnetic member 22 can usually be 40 degrees to 90 degrees. For example, the magnetic member 22 can be driven to rotate 40 degrees, 45 degrees, 50 degrees, 55 degrees, 60 degrees, 65 degrees, 70 degrees, 75 degrees, 80 degrees, 85 degrees, 90 degrees, etc. Usually, when the magnetic member 22 rotates about 60 degrees, the magnetic adsorption state between the magnetic member 22 and the first main body portion 1 can be changed. Usually, for the convenience of operation, the magnetic member 22 can be driven to rotate 90 degrees to distinguish the connection state of the first main body portion 1 and the second main body portion 2. As Figure 4 shown, it is the connection state when the first main body portion 1 and the magnetic member 22 can be magnetically adsorbed. At this time, the magnetic member 22 is driven to rotate 90 degrees to Figure 5 the state shown, which can make the magnetic member 22 as far away from the partition member 213 as possible, so as to facilitate the transmission of the magnetic field of the magnetic member 22 along the magnetic conductive member, reduce the influence of the partition member 213 on the magnetic field transmission, cause the magnetic field to diffuse and transmit outward, make the first main body portion 1 and the magnetic member 22 magnetically adsorbed and connected, and affect disassembly. When the rotation angle of the magnetic member 22 is too small, the partition member 213 is likely to affect the generation of the magnetic field. During installation, the magnetic adsorption connection between the magnetic member 22 and the first main body portion 1 will be unstable. Or, during disassembly, part of the magnetic field of the magnetic member 22 is transmitted outward and can still be magnetically adsorbed and connected to the first main body portion 1, affecting disassembly.
[0096] An embodiment of the present application provides a handle and a cooking appliance. The handle includes a first main body part 1 and a second main body part 2 that are detachably connected. The second main body part 2 includes a first body part 21 and a magnetic part 22. The first body part 21 includes a first magnetic conductive part 211, a second magnetic conductive part 212, and a partition part 213 that are used to enclose an accommodation cavity 214. The partition part 213 is located between the first magnetic conductive part 211 and the second magnetic conductive part 212. The magnetic part 22 is located in the accommodation cavity 214. When the magnetic part 22 rotates relative to the first body part 21, the positions of the first magnetic pole 221 and the second magnetic pole 222 relative to the first magnetic conductive part 211 and the second magnetic conductive part 212 change, so that the magnetic field of the magnetic part 22 can be transmitted outward or along the magnetic conductive part, so that the second main body part 2 can be magnetically adsorbed to or detached from the first main body part 1 through the magnetic part 22. Through such a design, the handle can be easily installed and disassembled, while saving space and improving the versatility of the handle.
[0097] The foregoing is only a preferred embodiment of the present application and is not intended to limit the present application. For those skilled in the art, various changes and modifications can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A handle, characterized in that, The handle includes: A first main body portion (1); A second main body portion (2) for connecting to the first main body portion (1); Wherein, the second main body portion (2) includes a first main body part (21) and a magnetic member (22). The first main body part (21) includes a first magnetic member (211), a second magnetic member (212), and a partition member (213). The first magnetic member (211), the second magnetic member (212), and the partition member (213) enclose a receiving cavity (214), and the partition member (213) is located between the first magnetic member (211) and the second magnetic member (212). The magnetic member (22) has a first magnetic pole (221) and a second magnetic pole (222) with opposite magnetic polarities, and is located in the receiving cavity (214). The magnetic member (22) can rotate relative to the first main body part (21). When one of the first magnetic pole (221) and the second magnetic pole (222) is located at the corresponding position of the first magnetic member (211), and the other is located at the corresponding position of the second magnetic member (212), the magnetic member (22) is magnetically adsorbed and connected to the first main body portion (1). When the first magnetic pole (221) is simultaneously located at the corresponding positions of the first magnetic member (211) and the second magnetic member (212), and the second magnetic pole (222) is simultaneously located at the corresponding positions of the first magnetic member (211) and the second magnetic member (212), the magnetic member (22) is disengaged from the magnetic adsorption connection with the first main body portion (1).
2. The handle according to claim 1, characterized in that, The first magnetic member (211) has a first end (211a) and a second end (211b). The second magnetic member (212) has a third end (212a) and a fourth end (212b). The first end (211a) is located on the side of the first magnetic member (211) close to the third end (212a), and the second end (211b) is located on the side of the first magnetic member (211) close to the fourth end (212b). The partition member (213) includes a first partition portion (213a) and a second partition portion (213b). The first partition portion (213a) is located between the first end (211a) and the third end (212a), and the second partition portion (213b) is located between the second end (211b) and the fourth end (212b).
3. The handle according to claim 2, characterized in that, The receiving cavity (214) penetrates through one end of the first main body part (21) far from the first main body portion (1). The second main body portion (2) further includes a second main body part (23). The second main body part (23) is located at one end of the first main body part (21) far from the first main body portion (1) and is fixedly connected to the magnetic member (22) relatively. The second main body part (23) can rotate relative to the first main body part (21). When the second main body part (23) rotates, the second main body part (23) can drive the magnetic member (22) to rotate relative to the first main body part (21).
4. The handle according to claim 3, wherein In the magnetic member (22) and the second main body portion (23), one is provided with a first recess portion (223), and the other is provided with a first protrusion portion (231). At least a part of the first protrusion portion (231) extends into the first recess portion (223).
5. The handle according to claim 4, wherein, The first recess portion (223) is provided in the magnetic member (22), and the first protrusion portion (231) is provided in the second main body portion (23). Along the radial direction of the magnetic member (22), opposite ends of the first recess portion (223) penetrate through the magnetic member (22) respectively, and the first magnetic pole (221) and the second magnetic pole (222) are located on opposite sides of the first recess portion (223).
6. The handle according to any one of claims 1 to 5, characterized in that In the first main body portion (1) and the second main body portion (2), one is provided with a second protrusion portion (11), and the other is provided with a second recess portion (215). At least a part of the second protrusion portion (11) can extend into the second recess portion (215).
7. The handle according to claim 6, characterized in that, In the first main body portion (1) and the second main body portion (2), one is provided with at least one third protrusion portion (12), and the other is provided with at least one third recess portion (216). At least a part of the third protrusion portion (12) can extend into the corresponding third recess portion (216).
8. The handle according to claim 7, characterized in that, The first main body portion (1) is provided with the second protrusion portion (11) and at least two of the third protrusion portions (12). Each of the third protrusion portions (12) is arranged along the circumferential direction of the second protrusion portion (11) and is connected to the second protrusion portion (11). The second main body portion (2) is provided with the second recess portion (215) and at least two of the third recess portions (216). Each of the third recess portions (216) is arranged along the circumferential direction of the second recess portion (215) and communicates with the second recess portion (215).
9. The handle according to any one of claims 1 to 5, characterized in that, The handle further includes a buffer member (3), and the buffer member (3) is located between the first main body portion (1) and the second main body portion (2).
10. A cooking appliance, characterized in that, The cooking appliance includes a pot body (4) and a handle, and the handle is the handle according to any one of claims 1 to 9; The first main body portion (1) of the handle is mounted on the pot body (4), and the second main body portion (2) is detachably connected to the first main body portion (1).