Combined magnetic heat insulation pad
By designing a combined magnetic insulation pad, using a mesh structure and hollow design, the problem that existing magnetic insulation pads cannot carry multiple containers at the same time is solved, achieving versatility and convenience, and reducing cost and storage space requirements.
Patent Information
- Application Number
- CN202422712410.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-11-06
AI Technical Summary
Existing magnetic insulation pads can only carry one food container and cannot meet more than two needs at the same time. Moreover, multiple insulation pads take up a lot of space when used, which increases consumer purchase costs and is inconvenient to storage.
A combined magnetic heat insulation pad is designed, including a first magnetic heat insulation pad and a second magnetic heat insulation pad, which can be disassembled or combined by a fitting structure, adopts a hollow design and evenly distributed magnet blocks to improve stability and aesthetics, and coats the magnet blocks with edible silicone to enhance durability and anti-slip effect.
It realizes versatility, adapts to different sizes and quantities of food containers, simplifies operational steps, reduces storage space requirements, reduces manufacturing costs, and improves convenience and aesthetics of use.
Smart Images

Figure CN223286918U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of thermal insulation pads, in particular to a combined magnetic thermal insulation pad. Background Art
[0002] When you use a pot or dish to hold freshly cooked food, the heat from the food is transferred to the pot or dish, causing it to also reach a higher temperature. If you place the hot pot or dish directly on a table, the high temperature may cause burn marks, discoloration, or deformation on the surface, especially on wooden or plastic surfaces. Therefore, a heat insulating mat is often used to provide insulation.
[0003] In order to avoid having to pick up an insulation pad separately when transferring an iron pan or an iron plate, an existing patent discloses a magnetic insulation pad. The magnetic insulation pad has a built-in magnet block so that the magnetic insulation pad can magnetically attract the bottom of the iron pan or iron plate. For example, when transferring an iron pan, the iron pan and the magnetic insulation pad can be directly taken to the place where they need to be placed without having to pick up a magnetic insulation pad separately, which is convenient for operation.
[0004] However, this type of magnetic insulation mat can only hold one food container at a time, not two at a time. Buying more than two magnetic insulation mats at the same time increases the cost for consumers, hindering their promotion. Furthermore, multiple magnetic insulation mats require a high storage height, making them inconvenient to place in the home. Therefore, it is necessary to develop a modular magnetic insulation mat that can be separated or combined for use depending on the actual situation.
[0005] It can be seen that the existing technology still needs to be improved and enhanced. Utility Model Content
[0006] In view of the above-mentioned deficiencies in the prior art, the purpose of the present invention is to provide a combined magnetic thermal insulation pad, which aims to separate or combine two magnetic thermal insulation pads for use according to actual conditions.
[0007] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0008] A combined magnetic thermal insulation pad comprises a first magnetic thermal insulation pad and a second magnetic thermal insulation pad capable of being embedded in the first magnetic thermal insulation pad, the first magnetic thermal insulation pad comprises a first central block and a plurality of first hollow petals arranged in a circular array on the outer wall of the first central block, the top surface of the first central block is lower than the top surface of the first hollow petals to form a splicing cavity, each first hollow petal has a first magnet block built in, the second magnetic thermal insulation pad comprises a second central block and a plurality of second hollow petals arranged in a circular array on the outer wall of the second central block, the number of the first hollow petals is the same as the number of the second hollow petals and corresponds one to one, each second hollow petal has a second magnet block built in, the bottom surface of the second central block is higher than the bottom surface of the second hollow petal to form a docking cavity; when the first magnetic thermal insulation pad and the second magnetic thermal insulation pad are embedded, the second central block is embedded in the splicing cavity to fit with the first central block, the second hollow petal is embedded in the first hollow petal, and the top surface of the second hollow petal is flush with the top surface of the first hollow petal.
[0009] As a further improvement of the above technical solution, two adjacent first hollow petals are connected to each other and share the same petal edge. The two adjacent first hollow petals are spaced apart to form a splicing groove for the petal edge of the first hollow petal to be embedded in.
[0010] As a further improvement of the above technical solution, there are six first hollow petals and six second hollow petals.
[0011] As a further improvement of the above technical solution, a first center hole is formed on the first center block, and a second center hole is formed on the second center block.
[0012] As a further improvement of the above technical solution, the first center hole and the second center hole have the same aperture.
[0013] As a further improvement of the above technical solution, the first center block and the first hollow petal body of the first magnetic thermal insulation pad are integrally formed by edible silicone and cover the first magnet block; the second center block and the second hollow petal body of the second magnetic thermal insulation pad are integrally formed by edible silicone and cover the second magnet block.
[0014] Beneficial effects of the present invention: Compared with the prior art, the combined magnetic insulation pad provided by the present invention can be split into a first magnetic insulation pad and a second magnetic insulation pad for separate use, or the first magnetic insulation pad and the second magnetic insulation pad can be combined into a whole for use, thereby adapting to food containers of different sizes and quantities, thereby improving the versatility of the insulation pad. When moving an iron container, the user does not need to hold the magnetic insulation pad in hand. The magnetic insulation pad can be moved together with the bottom of the magnetic container, which simplifies the operating steps and enhances the convenience of use. The combined insulation pad can be split into individual insulation pads when not in use and can be combined again when needed, which makes them take up less space when stored and more suitable for compact storage needs in the home. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a three-dimensional diagram of the combined magnetic thermal insulation pad provided by the utility model.
[0016] Figure 2 This is a schematic diagram of the positions of the first magnet block and the second magnet block in the combined magnetic thermal insulation pad provided by the utility model.
[0017] Figure 3 This is a three-dimensional diagram of the first magnetic thermal insulation pad.
[0018] Figure 4 This is a three-dimensional diagram of the second magnetic thermal insulation pad.
[0019] Explanation of the main component symbols: 1-first magnetic thermal insulation pad, 11-first center block, 12-first hollow petal body, 13-splicing cavity, 14-first magnet block, 15-petal edge, 16-first center hole, 2-second magnetic thermal insulation pad, 21-second center block, 22-second hollow petal body, 23-second magnet block, 24-docking cavity, 25-splicing groove, 26-second center hole. DETAILED DESCRIPTION
[0020] The present invention provides a combined magnetic thermal insulation pad. To make the purpose, technical solution, and effects of the present invention more clear and explicit, the present invention is further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific examples described herein are only intended to explain the present invention and are not intended to limit the scope of protection of the present invention.
[0021] See also Figures 1-4The utility model provides a combined magnetic thermal insulation pad, comprising a first magnetic thermal insulation pad 1 and a second magnetic thermal insulation pad 2 that can be embedded in the first magnetic thermal insulation pad 1, the first magnetic thermal insulation pad 1 comprises a first central block 11 and a plurality of first hollow petals 12 arranged in a circular array on the outer wall of the first central block 11, the top surface of the first central block 11 is lower than the top surface of the first hollow petals 12 to form a splicing cavity 13, each first hollow petal 12 has a first magnet block 14 built in, the second magnetic thermal insulation pad 2 comprises a second central block 21 and a plurality of second hollow petals 22 arranged in a circular array on the outer wall of the second central block 21, the number of the first hollow petals 12 is the same as the number of the second hollow petals 22 and corresponds one to one, each second hollow petal 22 has a second magnet block 23 built in, the bottom surface of the second central block 21 is higher than the bottom surface of the second hollow petal 22 to form a docking cavity 24;
[0022] When the first magnetic thermal insulation pad 1 and the second magnetic thermal insulation pad 2 are used together, the second center block 21 is embedded in the splicing cavity 13 to fit with the first center block 11, and the second hollow petal body 22 is embedded in the first hollow petal body 12. The top surface of the second hollow petal body 22 is flush with the top surface of the first hollow petal body 12, so that the container can be supported by the second hollow petal body 22 and the first hollow petal body 12 at the same time, ensuring that the container is placed stably.
[0023] It can be understood that the second magnetic thermal insulation pad 2 is embedded in the first magnetic thermal insulation pad 1 by gravity. The second magnetic thermal insulation pad 2 can be separated from the first magnetic thermal insulation pad 1 by simply lifting the second magnetic thermal insulation pad 2 upward. In this way, the first magnetic thermal insulation pad 1 and the second magnetic thermal insulation pad 2 can support two containers respectively, which is highly practical.
[0024] The individual structures of the first and second magnetic insulation pads 1 and 2 resemble a blooming flower, symmetrical and aesthetically pleasing, which can enhance consumer purchasing appeal. The combination of the first and second magnetic insulation pads 1 and 2 forms two concentrically blooming flowers, also offering a more aesthetically pleasing appearance. Compared to the large, circular structures of traditional magnetic insulation pads, the combined magnetic insulation pads provided by the present invention utilize a hollow design, requiring less material, resulting in lower manufacturing costs and a lower selling price, making them more attractive to consumers.
[0025] Compared with the prior art, the combined magnetic thermal insulation pad provided by the present invention can be split into a first magnetic thermal insulation pad 1 and a second magnetic thermal insulation pad 2 for separate use, or the first magnetic thermal insulation pad 1 and the second magnetic thermal insulation pad 2 can be combined into a whole for use, thereby adapting to food containers of different sizes and quantities, thereby improving the versatility of the thermal insulation pad. When moving an iron container, the user does not need to hold the magnetic thermal insulation pad in hand. The magnetic thermal insulation pad can be moved together with the bottom of the magnetically attracted container, which simplifies the operation steps and enhances the convenience of use. The combined thermal insulation pad can be split into individual thermal insulation pads when not in use and can be combined again when needed, which makes them take up less space when stored and more suitable for compact storage needs in the home.
[0026] The two adjacent first hollow petals 12 are connected to each other and share the same petal edge 15. The two adjacent first hollow petals 12 are spaced apart to form a splicing groove 25 for the petal edge 15 of the first hollow petal body 12 to be embedded. The design of the shared petal edge 15 and the use of the splicing groove 25 make the first magnetic thermal insulation pad 1 and the second magnetic thermal insulation pad 2 more like a whole after being combined. This design optimizes space utilization efficiency without increasing the overall size. The design of the splicing groove 25 makes the second magnetic thermal insulation pad 2 easy to insert or remove, which is convenient for users to quickly assemble or disassemble the thermal insulation pad according to actual needs.
[0027] In this embodiment, in order to improve the aesthetics of the magnetic insulation pad, six first hollow petals 12 and six second hollow petals 22 are provided, presenting a natural hexagonal pattern with good symmetry; a balanced support force can be provided, making the insulation pad more stable when placing a food container and not easy to tilt or overturn.
[0028] It can be understood that since each first hollow petal body 12 has a built-in first magnet block 14 and each second hollow petal body 22 has a built-in second magnet block 23, the design of 6 first hollow petals 12 and second hollow petals 22 means that the magnetic force can be evenly distributed, making the magnetic insulation pad more firm and reliable when adsorbing iron pots or iron plates, and not easy to fall off.
[0029] The first center block 11 is provided with a first center hole 16, and the second center block 21 is provided with a second center hole 26. The first center hole 16 and the second center hole 26 have the following advantages: 1. They reduce material usage, thereby reducing the overall weight of the thermal insulation mat; 2. The first center hole 16 and the second center hole 26 can also serve as handles, making it easier for the user to lift the thermal insulation mat when needed, especially when adjusting its position.
[0030] Preferably, the first center hole 16 and the second center hole 26 have the same aperture. The design of the first center hole 16 and the second center hole 26 with the same aperture allows the first magnetic thermal insulation pad 1 and the second magnetic thermal insulation pad 2 to be more accurately fitted when combined, ensuring that the center positions of the two first magnetic thermal insulation pads 1 and the second magnetic thermal insulation pads 2 are aligned in the assembled state.
[0031] The first center block 11 and the first hollow petal body 12 of the first magnetic thermal insulation pad 1 are integrally formed with edible silicone and cover the first magnet block 14; the second center block 21 and the second hollow petal body 22 of the second magnetic thermal insulation pad 2 are integrally formed with edible silicone and cover the second magnet block 23. Edible silicone has good high temperature resistance and can withstand the high temperature when cooking food, ensuring the safety and durability of the thermal insulation pad during use. The edible silicone material is soft and has a certain elasticity, which can provide better anti-slip effect, prevent the container from sliding on smooth surfaces, and increase the stability of use. The design of the edible silicone coated magnet block can effectively protect the first magnet block 14 and the second magnet block 23 from the influence of the external environment and extend the service life of the magnet.
[0032] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.
[0033] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections, or mutual communication; direct connections or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0034] It is understandable that those skilled in the art can make equivalent substitutions or changes based on the technical solution and the utility model concept of the present invention, and all these changes or substitutions should fall within the scope of protection of the present invention.
Claims
1. A combined magnetic thermal insulation pad, characterized in that: It includes a first magnetic thermal insulation pad and a second magnetic thermal insulation pad that can be embedded in the first magnetic thermal insulation pad, the first magnetic thermal insulation pad includes a first central block and a plurality of first hollow petals arranged in a circular array on the outer wall of the first central block, the top surface of the first central block is lower than the top surface of the first hollow petals to form a splicing cavity, each first hollow petal has a first magnet block built in, the second magnetic thermal insulation pad includes a second central block and a plurality of second hollow petals arranged in a circular array on the outer wall of the second central block, the number of the first hollow petals is the same as the number of the second hollow petals and corresponds one to one, each second hollow petal has a second magnet block built in, and the bottom surface of the second central block is higher than the bottom surface of the second hollow petals to form a docking cavity; When the first magnetic thermal insulation pad and the second magnetic thermal insulation pad are engaged, the second center block is embedded in the splicing cavity to fit with the first center block, the second hollow petal body is embedded in the first hollow petal body, and the top surface of the second hollow petal body is flush with the top surface of the first hollow petal body.
2. The combined magnetic thermal insulation pad according to claim 1, characterized in that: Two adjacent first hollow petals are connected to each other and share a same petal edge. The two adjacent first hollow petals are spaced apart to form a splicing groove for the petal edges of the first hollow petals to be embedded in.
3. The combined magnetic thermal insulation pad according to claim 2, characterized in that: There are six first hollow petals and six second hollow petals.
4. The combined magnetic thermal insulation pad according to claim 1, characterized in that: The first center block is provided with a first center hole, and the second center block is provided with a second center hole.
5. The combined magnetic thermal insulation pad according to claim 4, characterized in that: The first central hole and the second central hole have the same aperture.
6. The combined magnetic thermal insulation pad according to any one of claims 1 to 5, characterized in that: The first center block and the first hollow petal of the first magnetic thermal insulation pad are integrally formed by edible silicone and cover the first magnet block; the second center block and the second hollow petal of the second magnetic thermal insulation pad are integrally formed by edible silicone and cover the second magnet block.