Graphene carbon crystal electric heating plate

By introducing support and buffer components into the graphene carbon crystal heating plate, the problems of the equipment's inflexible movement and lack of protection are solved, thereby improving the safety and adaptability of the heating plate.

CN224178329UActive Publication Date: 2026-04-28JIANGSU KANGNUAN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU KANGNUAN TECH CO LTD
Filing Date
2025-03-05
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing graphene carbon crystal heating plates cannot be moved flexibly and lack effective protective measures, resulting in insufficient practicality and safety.

Method used

The design includes a support assembly and a cushioning assembly. The support assembly is easy to move with casters, while the cushioning assembly protects the heating plate from tipping over with weights and cushioning springs. The adjustment assembly allows for height adjustment via a crank handle and chain.

Benefits of technology

It enables flexible movement and height adjustment of the heating plate, improving safety and adaptability, and preventing damage when the equipment is tipped over.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a graphene carbon crystal electric heating plate, which belongs to the field of electric heating devices and comprises a mounting frame, an electric heating plate body is mounted in the mounting frame, mounting grooves are formed in two ends of two sides of the mounting frame, and buffer components are arranged in the mounting grooves; the buffer assembly comprises a supporting rod, a weight and a buffer spring, one end of the supporting rod is hinged to the interior of the mounting groove, a sliding groove is formed in the weight, and the other end of the supporting rod is arranged in the sliding groove in a sliding mode. According to the electric heating plate, the supporting assemblies are arranged, when the electric heating plate body topples, the supporting rods can be automatically unfolded to support the electric heating plate body against the ground, buffering is conducted through the buffering springs, then the electric heating plate body is protected, safety is improved, the buffering assemblies and the adjusting assemblies are further arranged, moving and transporting are convenient, the height of the electric heating plate body can be adjusted, and practicability is high. Different use requirements are met, and the adaptability is improved.
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Description

Technical Field

[0001] This utility model relates to the field of electric heating device technology, and in particular to a graphene carbon crystal electric heating plate. Background Technology

[0002] A graphene carbon crystal electric heating plate, application number CN202223145661.2, includes a fixing plate, a heating plate, a heat dissipation plate, a cooling fan, and a heat insulation component. The front side of the fixing plate is recessed to form a mounting groove, with openings at both ends in the horizontal direction. The heating plate is disposed within the mounting groove, and the heat dissipation plate is connected to the front side of the heating plate. The heat insulation component includes a heat insulation plate and heat insulation cloth. A connecting cavity is provided within the fixing plate on the upper side of the mounting groove, and the heat insulation cloth is disposed within the connecting cavity. The heat insulation plate and the cooling fan are positioned opposite each other at both ends of the horizontal direction of the mounting groove. The fixing plate secures the heating plate, and the heat dissipation plate and cooling fan improve the heat dissipation effect of the heating plate. When the heating plate is stopped, the heat insulation plate and heat insulation cloth insulate the heating plate, preventing excessive heat loss. When the heating plate is restarted, the heating rate is increased, energy consumption is reduced, and the user experience is improved.

[0003] While the aforementioned technologies can reduce energy consumption and improve user experience, they are primarily designed for installation on walls or panels, limiting their flexibility and practicality. Furthermore, the technology lacks effective protection for the heating plate, making it highly susceptible to damage in the event of an accidental tipping, thus compromising overall safety. Utility Model Content

[0004] In view of the shortcomings of the existing technology, this utility model provides a graphene carbon crystal electric heating plate.

[0005] An embodiment of this utility model provides a graphene carbon crystal heating plate, comprising:

[0006] The mounting frame contains a heating plate body, and mounting slots are provided at both ends of the mounting frame, with buffer components installed in the mounting slots.

[0007] The buffer assembly includes a support rod, a weight, and a buffer spring. One end of the support rod is hinged to a mounting groove. The weight has a sliding groove. The other end of the support rod is slidably disposed in the sliding groove. The two ends of the buffer spring are respectively fixed to the bottom of the sliding groove and one end of the support rod.

[0008] A support assembly for supporting the heating plate body.

[0009] Furthermore, the support assembly includes a support box and two bases. An adjustment assembly is provided between the support box and the mounting frame. The two bases are respectively fixedly installed at both ends of the bottom of the support box, and universal wheels are fixedly installed at both ends of the bottom of each base.

[0010] Furthermore, the adjustment assembly includes two round rods, two threaded rods, and a chain. The two round rods are rotatably connected through both ends of the support box, and the two threaded rods are fixedly mounted on the two round rods. Threaded holes are provided at both ends of the bottom of the mounting frame. A sprocket is fixedly mounted on each of the two round rods, and the two sprockets are driven by a chain.

[0011] Furthermore, the top of the mounting groove is inclined, and the support rod is abutted against the inclined surface.

[0012] Furthermore, an anti-slip pad is fixedly provided at the bottom of the weight.

[0013] Furthermore, a crank handle is fixedly provided at the bottom of one of the cylindrical rods.

[0014] Compared with the prior art, the present invention has the following beneficial effects:

[0015] 1. A support assembly is provided. When tilted, two weights on one side of the tilting direction can drive two support rods to unfold. Then, they are pressed against the ground by the anti-slip pads and cushioned by the compression buffer springs, thus protecting the heating plate body and preventing damage. After the mounting frame is lifted, the support rods can automatically retract into the mounting slot to avoid taking up space.

[0016] 2. A buffer assembly and an adjustment assembly are provided. The casters allow users to easily move or transport the heating plate body. By simultaneously rotating the two threaded rods with a crank and chain, the mounting frame can be moved upwards, and vice versa, thus adjusting the height of the heating plate body to meet different usage needs.

[0017] In summary, this utility model is equipped with a support component. When the heating plate body tilts, the support rod can automatically unfold to support it against the ground, and a buffer spring will provide cushioning, thereby protecting the heating plate body and improving safety. It is also equipped with a buffer component and an adjustment component to facilitate movement and transportation, and the height of the heating plate body can be adjusted to adapt to different usage needs, increasing adaptability. Attached Figure Description

[0018] Figure 1 This is a three-dimensional schematic diagram of a graphene carbon crystal heating plate as described in the embodiments of this utility model.

[0019] Figure 2This is a cross-sectional view of the mounting frame in a graphene carbon crystal heating plate according to an embodiment of the present invention.

[0020] Figure 3 This is a cross-sectional view of the support box in a graphene carbon crystal heating plate according to an embodiment of the present invention.

[0021] Figure 4 This is a three-dimensional schematic diagram of a graphene carbon crystal heating plate in a tilted state as described in this embodiment of the present invention.

[0022] In the above attached figures: 1. Mounting frame, 2. Heating plate body, 3. Support box, 4. Base, 5. Casters, 6. Mounting groove, 7. Support rod, 8. Weight, 9. Buffer spring, 10. Anti-slip pad, 11. Round rod, 12. Threaded rod, 13. Threaded hole, 14. Sprocket, 15. Chain, 16. Handle. Detailed Implementation

[0023] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.

[0024] like Figures 1-4 As shown in the figure, this utility model embodiment proposes a graphene carbon crystal heating plate, comprising:

[0025] Mounting frame 1, the heating plate body 2 is installed in the mounting frame 1, and mounting grooves 6 are provided at both ends of the two sides of the mounting frame 1, and buffer components are provided in the mounting grooves 6.

[0026] The buffer assembly includes a support rod 7, a weight 8, and a buffer spring 9. One end of the support rod 7 is hinged to the mounting groove 6. The top of the mounting groove 6 is set with an incline. The support rod 7 is set against the incline, so that the angle of the support rod 7 is greater than 90 degrees. Therefore, when it is supported with the ground, it will not be squeezed back into the mounting groove 6, but will be squeezed outward and pressed against the incline of the mounting groove 6.

[0027] The weight 8 is provided with a sliding groove, and the other end of the support rod 7 is slidably disposed in the sliding groove. The weight 8 has a large mass, so that when the mounting frame 1 is tilted, the support rod 7 can be extended outward from the mounting groove 6 under the action of the weight 8, and then abut against the ground to support the mounting frame 1; when the mounting frame 1 is lifted up and kept in a normal vertical state, the support rod 7 can be reset under the action of the weight 8, also keeping it in a vertical state, and retracted into the mounting groove 6 to avoid occupying space;

[0028] The two ends of the buffer spring 9 are fixedly installed at the bottom of the slide groove and one end of the support rod 7, respectively. The buffer spring 9 plays a buffering role. The bottom of the weight 8 is fixedly provided with an anti-slip pad 10, which plays an anti-slip role.

[0029] The support assembly is used to support the electric heating plate body 2. The support assembly includes a support box 3 and two bases 4. The mounting frame 1 is set on the support box 3. The two bases 4 are respectively fixedly set at the bottom ends of the support box 3. The bottom ends of the bases 4 are each fixedly equipped with casters 5. The casters 5 facilitate the user to move or transport the electric heating plate body 2.

[0030] An adjustment assembly is provided between the support box 3 and the mounting frame 1. The adjustment assembly includes two round rods 11, two threaded rods 12, and a chain 15. The two round rods 11 pass through both ends of the support box 3 and are rotatably connected. The two threaded rods 12 are fixedly mounted on the two round rods 11. Threaded holes 13 are provided at both ends of the bottom of the mounting frame 1. The threaded rods 12 extend and retract into the threaded holes 13 on the same side and are threadedly connected to them. A sprocket 14 is fixedly mounted on each of the two round rods 11. The two sprockets 14 are driven by the chain 15. A crank 16 is fixedly mounted at the bottom of one of the round rods 11. The crank 16 facilitates the user to rotate the threaded rod 12.

[0031] The detailed working process of this utility model is as follows:

[0032] 1. In use, the corresponding round rod 11 is rotated by the crank handle 16. The round rod 11 drives another round rod 11 to rotate through the chain 15 and two sprockets 14. In turn, the two round rods 11 drive the two threaded rods 12 to rotate simultaneously. The rotating threaded rods 12 can drive the mounting frame 1 to move upward. Turning the crank handle 16 in the opposite direction can drive the mounting frame 1 to move downward, thereby adjusting the height of the electric heating plate body 2.

[0033] 2. When the electric heating plate body 2 is tilted, the two weights 8 on the side of the tilting direction will, under their own weight, drive the two support rods 7 to unfold and separate from the mounting groove 6. Then, they will come into contact with the ground through the anti-slip pad 10, and at the same time squeeze the buffer spring 9, thereby buffering the electric heating plate body 2 and preventing damage to the electric heating plate body 2.

[0034] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A graphene carbon crystal heating plate, characterized in that, include: Mounting frame (1), the mounting frame (1) is equipped with a heating plate body (2), and mounting grooves (6) are provided at both ends of the mounting frame (1), and buffer components are provided in the mounting grooves (6). The buffer assembly includes a support rod (7), a weight (8), and a buffer spring (9). One end of the support rod (7) is hinged to the mounting groove (6). The weight (8) is provided with a sliding groove. The other end of the support rod (7) is slidably disposed in the sliding groove. The two ends of the buffer spring (9) are respectively fixedly disposed at the bottom of the sliding groove and at one end of the support rod (7). A support assembly for supporting the heating plate body (2).

2. The graphene carbon crystal heating plate according to claim 1, characterized in that, in: The support assembly includes a support box (3) and two bases (4). An adjustment assembly is provided between the support box (3) and the mounting frame (1). The two bases (4) are respectively fixed at both ends of the bottom of the support box (3). Universal wheels (5) are fixed at both ends of the bottom of each base (4).

3. The graphene carbon crystal heating plate according to claim 2, characterized in that, in: The adjustment assembly includes two round rods (11), two threaded rods (12), and a chain (15). The two round rods (11) are rotatably connected through both ends of the support box (3). The two threaded rods (12) are fixedly mounted on the two round rods (11). Threaded holes (13) are provided at both ends of the bottom of the mounting frame (1). Sprockets (14) are fixedly mounted on both round rods (11). The two sprockets (14) are driven by the chain (15).

4. The graphene carbon crystal heating plate according to claim 1, characterized in that, in: The top of the mounting groove (6) is set at an angle, and the support rod (7) is set against the angle.

5. A graphene carbon crystal heating plate according to claim 1, characterized in that, in: The bottom of the weight (8) is fixedly provided with an anti-slip pad (10).

6. A graphene carbon crystal heating plate according to claim 3, characterized in that, in: A crank handle (16) is fixedly provided at the bottom of one of the round rods (11).

Citation Information

Patent Citations

  • Graphene carbon crystal electric heating plate

    CN219577274U