Mounting structure of graphene heating sheet

By introducing an insulation plate into the mounting structure of the graphene heating element and making it contact with the base plate, and combining it with the design of heat-conducting plates and stabilizing rods, the problem of heat loss is solved, achieving more efficient heating and energy-saving effects.

CN224538354UActive Publication Date: 2026-07-21JIANGXI JINWEI ELECTRONIC TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI JINWEI ELECTRONIC TECHNOLOGY CO LTD
Filing Date
2025-06-26
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing graphene heating elements lose heat downwards during use, resulting in reduced heating efficiency and increased energy consumption.

Method used

The installation structure, which involves the contact between the insulation board and the base plate, combined with the design of heat-conducting plates and stabilizing rods, and the anti-detachment plate and clamping rods, enhances stability and insulation effect.

Benefits of technology

It effectively reduces heat loss downwards, improves heating efficiency, reduces energy consumption, and enhances the stability and safety of the installation structure.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224538354U_ABST
    Figure CN224538354U_ABST
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Abstract

The utility model relates to graphene heating sheet mounting technical field, especially graphene heating sheet's installation structure. The utility model provides such a graphene heating sheet's installation structure, including bottom plate, clamping bar, graphene heating sheet body, anti -drop board, heat conduction piece and stabilizing plate, the bottom plate top fixedly connected with a plurality of clamping bars, graphene heating sheet body is slidably arranged on the bottom plate, the clamping bar penetrates graphene heating sheet body, graphene heating sheet body top slidably sets up anti -drop board, the clamping bar penetrates anti -drop board, and anti -drop board can be closely contacted with bottom plate, and the middle part of anti -drop board is embedded with heat conduction piece, and the left and right sides of bottom plate are all fixedly connected with stabilizing plate. Through the contact of the heat preservation board and the bottom plate, the heat generated by the graphene heating sheet body can be effectively reduced to the bottom of the bottom plate, the heat insulation effect is achieved, more heat can be concentrated in the area that needs to be heated, the heating effect is improved, and the energy consumption is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of graphene heating element installation technology, and in particular to an installation structure for a graphene heating element. Background Technology

[0002] A graphene heating element is an electrothermal conversion device that uses graphene as its core heating material. Graphene is a two-dimensional nanomaterial composed of a single layer of carbon atoms arranged in a hexagonal lattice. It possesses excellent electrical, thermal, and mechanical properties, and the graphene heating element is a new type of heating product developed based on these unique properties.

[0003] Patent publication number CN219243682U discloses a graphene heating element installation structure for a heater, including a support assembly and a heating assembly. The support assembly includes a first engaging portion and a second engaging portion, with the second engaging portion disposed on the first engaging portion. The heating assembly includes a heating portion and a heat-conducting plate, with the heating portion disposed between the first engaging portion and the second engaging portion. While this patent allows for the simultaneous disassembly of multiple graphene heating elements by removing the locking mechanism, avoiding the tedious process of disassembling them one by one and thus saving time and effort and improving maintenance efficiency, in actual use, due to the lack of a heat preservation mechanism, some of the heat generated by the graphene heating elements dissipates downwards, not only reducing the heating effect but also increasing energy consumption.

[0004] Therefore, an installation structure for graphene heating elements with heat insulation function is needed. Utility Model Content

[0005] In order to overcome the shortcomings of existing patents in actual use, where some of the heat generated by the graphene heating element is lost downwards due to the lack of a heat preservation mechanism, which not only reduces the heating effect but also increases energy consumption, this utility model provides an installation structure for a graphene heating element with heat preservation function.

[0006] The technical solution of this utility model is as follows: an installation structure for a graphene heating element, comprising a base plate, clamping rods, a graphene heating element body, an anti-detachment plate, a heat-conducting plate, and a stabilizing plate. Multiple clamping rods are fixedly connected to the top of the base plate. The graphene heating element body is slidably mounted on the base plate, with the clamping rods penetrating through it. An anti-detachment plate is slidably mounted on the top of the graphene heating element body, with the clamping rods penetrating through it. The anti-detachment plate is in close contact with the base plate. A heat-conducting plate is embedded in the middle of the anti-detachment plate. Stabilizing plates are fixedly connected to both sides of the base plate. The system also includes support plates, insulation plates, and screws. Two support plates are mounted on both sides of the anti-detachment plate via screws. Multiple support plates are jointly fixedly connected to an insulation plate, which contacts the bottom of the base plate.

[0007] In one embodiment, the system further includes a connecting plate and a stabilizing bar. The connecting plate is fixedly connected to both the front and rear sides of the anti-detachment plate, and multiple stabilizing bars are fixedly connected to the bottom of the connecting plate.

[0008] In one embodiment, an adhesive is also included, with adhesive provided on both the front and rear sides of the bottom of the anti-detachment plate.

[0009] In one embodiment, a ball catcher is also included, with multiple ball catchers disposed inside the anti-detachment plate.

[0010] In one embodiment, an insulating plate is also included, with insulating plates provided at both the top and bottom of the graphene heating element body.

[0011] In one embodiment, a slot is provided at the upper end of the lever.

[0012] Compared with the prior art, this utility model provides an installation structure for a graphene heating element, which has the following beneficial effects: 1. By having the insulation plate in contact with the bottom of the base plate, the heat generated by the graphene heating element body can be effectively reduced to dissipate to the bottom of the base plate, thus playing a role in heat insulation and heat preservation, allowing more heat to be concentrated in the area that needs to be heated, improving the heating effect and reducing energy consumption.

[0013] 2. Place the anti-detachment plate on top of the graphene heating element body. The anti-detachment plate is fixed through the clamp and can make close contact with the base plate to prevent the heating element body from falling off during use.

[0014] 2. The anti-detachment plate is fixed by inserting the stabilizing rod into the installation device, thereby enhancing the stability of the anti-detachment plate and the entire installation structure and preventing the anti-detachment plate from loosening when subjected to external forces. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0016] Figure 2 This is a partial sectional view of the base plate, stabilizing plate, and ball clamping components of this utility model.

[0017] Figure 3 This is an exploded view of the anti-detachment plate, adhesive, and heat-conducting sheet of this utility model.

[0018] Figure 4 This is a partial sectional view of the support plate, insulation board, screws, and other components of this utility model.

[0019] Figure 5 This is a three-dimensional structural diagram of the anti-detachment plate, connecting plate, and stabilizer bar of this utility model.

[0020] The markings in the diagram are: 1-base plate, 2-clamping rod, 3-graphene heating element body, 4-anti-detachment plate, 5-adhesive, 6-heat-conducting sheet, 7-stabilizing plate, 8-supporting plate, 9-insulation plate, 10-screw, 11-connecting plate, 12-stabilizing rod, 13-clamping ball, 14-insulating plate. Detailed Implementation

[0021] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.

[0022] Example 1: An installation structure for a graphene heating element; please refer to [link / reference]. Figures 1-5 The system includes a base plate 1, clamping rods 2, a graphene heating element body 3, an anti-detachment plate 4, a heat-conducting plate 6, and a stabilizing plate 7. Several clamping rods 2 are fixedly connected to the top of the base plate 1. The graphene heating element body 3 is slidably mounted on the base plate 1, with the clamping rods 2 penetrating through it. An anti-detachment plate 4 is slidably mounted on the top of the graphene heating element body 3, with the clamping rods 2 penetrating through it. The anti-detachment plate 4 is in close contact with the base plate 1. A heat-conducting plate 6 is embedded in the middle of the anti-detachment plate 4. When the graphene heating element body 3 is powered on, the generated heat is transferred upwards. The heat-conducting plate 6 can quickly and efficiently conduct the heat generated by the graphene heating element body 3 away, allowing the heat to be more evenly distributed to the surrounding environment and improving heat utilization efficiency. Stabilizing plates 7 are fixedly connected to both sides of the base plate 1. Two supports 7 are installed on both sides of the anti-detachment plate 4 using screws 10. The support plate 8 and four support plates 8 are fixedly connected to the insulation plate 9. The insulation plate 9 is in contact with the bottom of the base plate 1. Adhesive 5 is provided on both the front and back sides of the bottom of the anti-detachment plate 4. During the installation process, the adhesive 5 can help to stick and fix the anti-detachment plate 4 to the graphene heating element body 3, enhance the tightness of the connection between the two, prevent loosening or gaps, and ensure smooth heat transfer. Several locking balls 13 are provided inside the anti-detachment plate 4. The upper end of the locking rod 2 has a locking groove. The locking balls 13 can be locked into the locking groove to further enhance the stability of the anti-detachment plate 4 and ensure that the graphene heating element body 3 will not loosen or fall off during use. Insulating plates 14 are provided on the top and bottom of the graphene heating element body 3. The insulating plates 14 can play the role of insulation and isolation to prevent short circuits and other electrical faults between the graphene heating element body 3 and other conductive parts, and ensure safe use.

[0023] When installing a graphene heating element, first, place the graphene heating element body 3 on top of the base plate 1. Then, place the anti-detachment plate 4 on top of the graphene heating element body 3. The anti-detachment plate 4 is fixed through the clamping rod 2 and can make close contact with the base plate 1, thereby preventing the heating element body from falling off during use. This completes the fixing of the graphene heating element body 3. Then, move the base plate 1 to a suitable position on the equipment, insert the mounting parts into the mounting holes of the stabilizing plate 7, tighten the mounting parts, and fix the base plate 1 on the equipment, thus completing the installation of the graphene heating element. During the use of the graphene heating element, the insulation plate 9 contacts the bottom of the base plate 1, which can effectively reduce the heat generated by the graphene heating element body 3 from dissipating downwards to the base plate 1, playing a role in heat insulation and heat preservation. This allows more heat to be concentrated in the area that needs to be heated, improving the heating effect and reducing energy consumption.

[0024] Example 2: Based on Example 1, please refer to... Figure 1 and Figure 5 The anti-detachment plate 4 has connecting plates 11 fixedly connected to both the front and rear sides, and four stabilizing rods 12 are fixedly connected to the bottom of the connecting plates 11.

[0025] When the base plate 1 is fixed in the appropriate position of the equipment, the stabilizer bar 12 will be inserted into the equipment to fix the anti-detachment plate 4, thereby enhancing the stability of the anti-detachment plate 4 and the entire installation structure, and preventing the anti-detachment plate 4 from loosening when subjected to external force.

[0026] The above description is merely an embodiment of this utility model and is not intended to limit the scope of this utility model. All equivalent substitutions made within the principles of this utility model should be included within the protection scope of this utility model. Contents not described in detail in this utility model are existing technologies known to those skilled in the art.

Claims

1. An installation structure for a graphene heating element, comprising a base plate (1), clamping rods (2), a graphene heating element body (3), an anti-detachment plate (4), a heat-conducting plate (6), and a stabilizing plate (7), wherein multiple clamping rods (2) are fixedly connected to the top of the base plate (1), the graphene heating element body (3) is slidably disposed on the base plate (1), the clamping rods (2) penetrate the graphene heating element body (3), the anti-detachment plate (4) is slidably disposed on the top of the graphene heating element body (3), the clamping rods (2) penetrate the anti-detachment plate (4), the anti-detachment plate (4) can be in close contact with the base plate (1), a heat-conducting plate (6) is embedded in the middle of the anti-detachment plate (4), and stabilizing plates (7) are fixedly connected to both the left and right sides of the base plate (1), characterized in that: It also includes a support plate (8), an insulation plate (9) and screws (10). Two support plates (8) are installed on both sides of the anti-detachment plate (4) by screws (10). Multiple support plates (8) are fixedly connected to the insulation plate (9), and the insulation plate (9) is in contact with the bottom of the base plate (1).

2. The mounting structure of a graphene heating element as described in claim 1, characterized in that: It also includes a connecting plate (11) and a stabilizing bar (12). The anti-detachment plate (4) is fixedly connected to the connecting plate (11) on both the front and rear sides. Multiple stabilizing bars (12) are fixedly connected to the bottom of the connecting plate (11).

3. The mounting structure of a graphene heating element as described in claim 2, characterized in that: It also includes adhesive (5), and adhesive (5) is placed on both the front and back sides of the bottom of the anti-detachment plate (4).

4. The mounting structure of a graphene heating element as described in claim 3, characterized in that: It also includes a ball catcher (13), and the anti-detachment plate (4) has multiple balls catchers (13) inside.

5. The mounting structure of a graphene heating element as described in claim 4, characterized in that: It also includes an insulating plate (14), and the graphene heating element body (3) is provided with an insulating plate (14) at both the top and bottom.

6. The mounting structure of a graphene heating element as described in claim 5, characterized in that: The upper end of the lever (2) has a slot.