Graphene intelligent heating floor

By introducing protective devices and thermal insulation structural layers into the graphene intelligent thermal floor, the problems of energy waste and low structural strength caused by downward heat conduction are solved, achieving more efficient heating effects and longer service life, while also improving the decorative and wear-resistant properties of the floor.

CN223360742UActive Publication Date: 2025-09-19CHINA CONSTR EIGHTH ENG BUREAU TECH CONSTR CO LTD
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Patent Information

Application Number
CN202422577633.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-19
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

Existing graphene intelligent thermal floors have the problem of heat conduction downwards, resulting in energy waste and low structural strength.

Method used

The protective device and heat-insulating structural layer design includes a C-shaped frame structure and a heat-insulating reflective layer, combined with solid wood boards, waterproof layers and wear-resistant layers to form an integrated floor assembly, which improves structural strength and reduces heat transfer downwards.

Benefits of technology

Effectively reduce energy consumption and waste, improve structural strength, extend service life, and enhance decorative effects and wear resistance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a graphene intelligent heating floor which comprises a protection device and a graphene intelligent heating floor body embedded in the protection device, the protection device comprises a first protection frame and a second protection frame, and the first protection frame and the second protection frame are each of a C-shaped frame structure. The first protection frame and the second protection frame are oppositely arranged to form a closed-loop protection device, and the protection device circumferentially surrounds the side surface of the graphene intelligent heating floor body through an adhesive layer. The graphene intelligent heating floor body comprises a heat insulation structure layer, a graphene heating layer and a solid wood board, and the heat insulation structure layer, the graphene heating layer and the solid wood board form an integrated structure from bottom to top. The utility model relates to the technical field of building materials, and can solve the problems that in the prior art, a graphene intelligent heating floor conducts heat downwards, so that part of energy consumption and heat are wasted, and the structural strength is low.
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Description

Technical Field

[0001] The utility model relates to the technical field of building materials, and in particular to a graphene intelligent heating floor. Background Art

[0002] As people's living standards continue to improve, more and more interior decoration projects are choosing to install graphene smart heating floors for winter heating. However, because existing graphene smart floors are laid directly on the ground, the heat generated by the graphene is transferred downward to the ground, wasting some of the heat, increasing energy consumption and affecting the heating effect of the graphene smart floor.

[0003] In addition, existing graphene smart floors also suffer from low structural strength, easy wear, and short service life. Therefore, it is necessary to provide a graphene smart thermal floor that can solve the problems of existing graphene smart thermal floors in which downward heat conduction leads to waste of energy and heat, and low structural strength. Summary of the Invention

[0004] The purpose of the utility model is to provide a graphene intelligent thermal floor, which can solve the problems in the prior art of the graphene intelligent thermal floor that the downward heat conduction leads to the waste of some energy and heat and the low structural strength.

[0005] The utility model is achieved in this way:

[0006] A graphene smart thermal floor comprises a protective device and a graphene smart thermal floor main body embedded in the protective device, the protective device comprises a first protective frame and a second protective frame, both of which are C-shaped frame structures, the first protective frame and the second protective frame are arranged opposite to each other to form a closed-loop protective device, and the protective device is circumferentially surrounded by an adhesive layer on the side surface of the graphene smart thermal floor main body; the graphene smart thermal floor main body comprises a thermal insulation structure layer, a graphene heating layer and a solid wood board, and the thermal insulation structure layer, the graphene heating layer and the solid wood board form an integrated structure from bottom to top.

[0007] Both ends of the opening of the first protective frame are formed with card slots, and both ends of the opening of the second protective frame are formed with buckles, which are matched and embedded in the card slots, so that the opening end of the first protective frame is movably connected with the opening end of the second protective frame.

[0008] The two side surfaces of the buckle are raised to form positioning buckles, the top of the buckle is raised to form a positioning rod, the inner walls on both sides of the slot are concave to form positioning slots, and the top of the slot is concave to form a positioning hole, so that the positioning buckle can be matched and embedded in the positioning slot, and the positioning rod can be matched and inserted into the positioning hole.

[0009] The bottom surfaces of the first protective frame and the second protective frame are both provided with supporting plates, and the bottom surface of the thermal insulation structure layer is adhered to the supporting plates through an adhesive layer.

[0010] The thermal insulation structure layer includes a fixing seat, a thermal insulation reflective layer and a high-density environmentally friendly substrate from bottom to top. The fixing seat is adhered to the support plate through an adhesive layer, and the high-density environmentally friendly substrate is adhered to the bottom surface of the graphene heating layer to form an integrated structure.

[0011] The surface of the solid wood board is provided with a waterproof layer.

[0012] The surface of the waterproof layer is provided with a decorative layer.

[0013] The surface of the decorative layer is provided with a wear-resistant layer, and the top surface of the wear-resistant layer is flush with the top surface of the protective device.

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

[0015] 1. The utility model is provided with a protective device. The first protective frame and the second protective frame circumferentially surround the main body of the graphene smart thermal floor. The support plate is supported on the bottom of the main body of the graphene smart thermal floor, which can provide better protection for the main body of the graphene smart thermal floor. At the same time, it improves the structural strength of the graphene smart thermal floor and extends the service life of the graphene smart thermal floor. The connection between the slot and the buckle is reliable and easy to disassemble and assemble.

[0016] 2. Since the utility model is provided with a heat-insulating structural layer, it can reduce the transfer of heat from the graphene heating layer to the floor below, thereby reducing energy consumption and heat waste, which is beneficial to improving the heating efficiency of the graphene heating layer.

[0017] 3. Since the utility model is provided with a solid wood board, a waterproof layer, a decorative layer and a wear-resistant layer, the graphene intelligent thermal floor has high structural strength, waterproof performance, decorative effect and wear resistance, and has a long service life. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a three-dimensional diagram of the graphene intelligent heating floor of the utility model;

[0019] Figure 2 This is a schematic diagram of the installation of the graphene intelligent heating floor of the utility model;

[0020] Figure 3 yes Figure 2 A magnified schematic diagram of point A in the middle;

[0021] Figure 4 This is a schematic diagram of the decomposition of the graphene intelligent heating floor of the utility model;

[0022] Figure 5 yes Figure 4 Enlarged schematic diagram of point B in the middle.

[0023] In the figure, 1. protective device; 11. first protective frame; 111. slot; 12. second protective frame; 121. buckle; 122. positioning buckle; 123. positioning rod; 13. support plate; 14. adhesive layer; 2. fixing seat; 3. heat-insulating reflective layer; 4. high-density environmentally friendly substrate; 5. graphene heating layer; 6. solid wood board; 7. waterproof layer; 8. decorative layer; 9. wear-resistant layer. DETAILED DESCRIPTION

[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0025] Please see the attached Figure 1 To the attached Figure 4 A graphene smart thermal floor comprises a protective device 1 and a graphene smart thermal floor main body embedded in the protective device 1, the protective device 1 comprises a first protective frame 11 and a second protective frame 12, the first protective frame 11 and the second protective frame 12 are both C-shaped frame structures, the first protective frame 11 and the second protective frame 12 are arranged opposite to each other to form a closed-loop protective device 1, the protective device 1 is circumferentially surrounded by an adhesive layer 14 on the side surface of the graphene smart thermal floor main body; the graphene smart thermal floor main body comprises a thermal insulation structure layer, a graphene heating layer 5 and a solid wood board 6, the thermal insulation structure layer, the graphene heating layer 5 and the solid wood board 6 form an integrated structure from bottom to top.

[0026] Preferably, the first and second protective frames 11, 12 can be made of stone, metal, high-strength wood, or the like, enclosing the main body of the graphene intelligent thermal floor, thereby enhancing its structural strength and extending its service life. The C-shaped structure of the first and second protective frames 11, 12 ensures effective protection while facilitating assembly and disassembly. The adhesive layer 14 can be made of a strong adhesive commonly used in the construction industry, or alternatively, a suitable adhesive material can be selected based on actual construction requirements.

[0027] The graphene heating layer 5 is a common material used in traditional graphene flooring and will not be described in detail here. A thermal insulation layer is provided below the graphene heating layer 5 to reduce the downward transfer of heat from the graphene heating layer 5, thereby avoiding energy consumption and heat waste in the graphene heating layer 5. A solid wood board 6 is placed over the graphene heating layer 5 and serves as a conventional decorative floor, providing high structural strength and a long service life.

[0028] Please see the attached Figure 5 Both ends of the opening of the first protective frame 11 are formed with a card slot 111, and both ends of the opening of the second protective frame 12 are formed with a buckle 121. The buckle 121 is matched and embedded in the card slot 111, so that the open end of the first protective frame 11 is movably connected with the open end of the second protective frame 12.

[0029] By plugging the buckle 121 into the slot 111, the open end of the first protective frame 11 and the open end of the second protective frame 12 can be quickly connected, making assembly and disassembly convenient and quick, with high connection reliability and a simple structure. The structural form of the buckle 121 and the slot 111 can be adaptively selected according to actual connection requirements.

[0030] Please see the attached Figure 5 The two side surfaces of the buckle 121 are raised to form positioning buckles 122, the top of the buckle 121 is raised to form a positioning rod 123, the inner walls on both sides of the slot 111 are concave to form positioning slots (not shown in the figure), and the top of the slot 111 is concave to form a positioning hole (not shown in the figure), so that the positioning buckle 122 can be matched and embedded in the positioning slot, and the positioning rod 123 can be matched and inserted into the positioning hole.

[0031] By setting the protruding and concave positioning buckle 122 and positioning slot as well as the positioning rod 123 and positioning hole, the connection between the buckle 121 and the slot 111 can be horizontally and vertically limited, thereby ensuring the connection reliability between the first protective frame 11 and the second protective frame 12 and avoiding loosening.

[0032] Please see the attached Figure 4 The bottom surfaces of the first protective frame 11 and the second protective frame 12 are both provided with a support plate 13 , and the bottom surface of the thermal insulation structure layer is adhered to the support plate 13 through an adhesive layer 14 .

[0033] Preferably, the support plate 13 can be made of metal, wood, stone and other materials, and is used to support the bottom of the graphene smart thermal floor main body, thereby further improving the structural strength of the graphene smart thermal floor main body, and also ensuring the flatness of the graphene smart thermal floor main body when embedded in the protective device 1.

[0034] Please see the attached Figure 3 The thermal insulation structure layer includes a fixing seat 2, a thermal insulation reflective layer 3 and a high-density environmentally friendly substrate 4 from bottom to top. The fixing seat 2 is adhered to the support plate 13 through an adhesive layer 14, and the high-density environmentally friendly substrate 4 is adhered to the bottom surface of the graphene heating layer 5 to form an integrated structure.

[0035] Preferably, the fixing base 2 can be arranged at the bottom of the heat-insulating reflective layer 3 using a wooden board for fixed installation on the support plate 13. The heat-insulating reflective layer 3 can be formed by applying the high-temperature heat-reflective coating of the existing technology on the bottom surface of the high-density environmentally friendly substrate 4 and the top surface of the fixing base 2 to form a heat-insulating reflective layer 3 of a certain thickness. The high-density environmentally friendly substrate 4 can be made of high-density fiberboard with an environmental protection grade of E1 or above, which has high structural strength to ensure the structural strength of the main body of the graphene intelligent thermal floor.

[0036] Please see the attached Figure 3The surface of the solid wood board 6 is provided with a waterproof layer 7. Preferably, the waterproof layer 7 can be painted on the surface of the solid wood board 6 with a waterproof paint, which can play a waterproof role and increase the safety of the graphene smart thermal floor main body.

[0037] Please see the attached Figure 4 A decorative layer 8 is provided on the surface of the waterproof layer 7.

[0038] The solid wood board 6 can be used directly as a decorative board. If there are higher requirements for interior decoration, preferably, a corresponding finished decorative board can be selected as the decorative layer 8 to match the interior decoration design.

[0039] Please see the attached Figure 4 The surface of the decorative layer 8 is provided with a wear-resistant layer 9 , and the top surface of the wear-resistant layer 9 is flush with the top surface of the protective device 1 .

[0040] The surface of the decorative layer 8 can be protected by the wear-resistant layer 9. Preferably, the wear-resistant layer 9 can be made of surface paper impregnated with melamine resin to which wear-resistant material (such as aluminum oxide) is added to reduce the wear of the decorative layer 8.

[0041] The top surface of the wear-resistant layer 9 is flush with the top surface of the protective device 1 to ensure that the surface of the graphene intelligent thermal floor main body is smooth and beautiful. If the decorative layer 8 and the wear-resistant layer 9 are not provided, the top surface of the solid wood board 6 can be flush with the top surface of the protective device 1.

[0042] Preferably, the fixing seat 2, the heat-insulating reflective layer 3, the high-density environmentally friendly substrate 4, the graphene heating layer 5, the solid wood board 6, the waterproof layer 7, the decorative layer 8, and the wear-resistant layer 9 are prefabricated in the factory according to the design requirements to form the main body of the graphene intelligent thermal floor; the first protective frame 11 and its support plate 13, the second protective frame 12 and its support plate 13 are all prefabricated in the factory according to the size of the main body of the graphene intelligent thermal floor. Preferably, the first protective frame 11 and the second protective frame 12 are symmetrical structures.

[0043] At the construction site, an adhesive layer 14 is applied to the inner walls of the first protective frame 11 and the second protective frame 12 and the top surface of the support plate 13, and half of the graphene smart thermal floor body is embedded in the second protective frame 12 and fixedly connected to the second protective frame 12 and its support plate 13 through the adhesive layer 14.

[0044] The open ends of the first protective frame 11 and the second protective frame 12 are connected, so that the other half of the graphene intelligent thermal floor body is embedded in the first protective frame 11, the card slot 111 and the buckle 121 are plugged into each other, and the positioning buckle 122 can be matched and embedded in the positioning card slot, and the positioning rod 123 can be matched and plugged into the positioning hole to form a protective device 1 with a closed-loop frame structure. At the same time, the first protective frame 11 and its support plate 13 are fixedly connected to the other half of the graphene intelligent thermal floor body through the adhesive layer 14.

[0045] The above are only preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A graphene intelligent heating floor, characterized by: The invention comprises a protective device (1) and a graphene intelligent thermal floor main body embedded in the protective device (1); the protective device (1) comprises a first protective frame (11) and a second protective frame (12); the first protective frame (11) and the second protective frame (12) are both C-shaped frame structures; the first protective frame (11) and the second protective frame (12) are arranged relative to each other to form a closed-loop protective device (1); the protective device (1) is circumferentially surrounded on the side surface of the graphene intelligent thermal floor main body by an adhesive layer (14); the graphene intelligent thermal floor main body comprises a heat-insulating structural layer, a graphene heating layer (5) and a solid wood board (6); the heat-insulating structural layer, the graphene heating layer (5) and the solid wood board (6) form an integrated structure from bottom to top.

2. The graphene intelligent thermal floor according to claim 1 is characterized in that: Both ends of the opening of the first protective frame (11) are formed with card slots (111), and both ends of the opening of the second protective frame (12) are formed with buckles (121), and the buckles (121) are matched and embedded in the card slots (111), so that the open end of the first protective frame (11) and the open end of the second protective frame (12) are movably connected.

3. The graphene intelligent thermal floor according to claim 2 is characterized in that: The two side surfaces of the buckle (121) are raised to form positioning buckles (122), the top of the buckle (121) is raised to form a positioning rod (123), the inner walls on both sides of the slot (111) are concave to form positioning slots, and the top of the slot (111) is concave to form a positioning hole, so that the positioning buckle (122) can be matched and embedded in the positioning slot, and the positioning rod (123) can be matched and inserted into the positioning hole.

4. The graphene intelligent thermal floor according to claim 1 or 2, characterized in that: A supporting plate (13) is provided on the bottom surface of the first protective frame (11) and the second protective frame (12), and the bottom surface of the heat-insulating structure layer is attached to the supporting plate (13) via an adhesive layer (14).

5. The graphene intelligent thermal floor according to claim 4 is characterized in that: The thermal insulation structure layer comprises, from bottom to top, a fixing seat (2), a thermal insulation reflective layer (3) and a high-density environmentally friendly substrate (4); the fixing seat (2) is attached to the support plate (13) via an adhesive layer (14); and the high-density environmentally friendly substrate (4) is attached to the bottom surface of the graphene heating layer (5) to form an integrated structure.

6. The graphene intelligent thermal floor according to claim 1, characterized in that: The surface of the solid wood board (6) is provided with a waterproof layer (7).

7. The graphene intelligent thermal floor according to claim 6, characterized in that: The surface of the waterproof layer (7) is provided with a decorative layer (8).

8. The graphene intelligent thermal floor according to claim 7, characterized in that: The surface of the decorative layer (8) is provided with a wear-resistant layer (9), and the top surface of the wear-resistant layer (9) is flush with the top surface of the protective device (1).