Application method of graphene heating part
By installing graphene heating components at the bottom of the building's interior walls and combining them with the principle of hot and cold air circulation, the problems of uneven indoor temperature and high cost have been solved, achieving uniform temperature distribution and cost reduction, thus promoting commercial applications.
Patent Information
- Application Number
- CN202511437833.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2025-11-21
AI Technical Summary
Improper installation of graphene heating components can lead to uneven indoor temperatures, affecting health and causing high installation costs, thus hindering their widespread commercial application.
The graphene heating element is installed around the bottom of the building's interior wall, using a long strip or plate-shaped shell. It combines the principle of hot and cold air circulation and is fixed tightly to the ground or baseboard. The width and installation method of the heating element are optimized, and graphene heating film or alternative materials are used.
It achieves uniform temperature distribution inside buildings, reduces installation and usage costs, provides technical conditions to replace centralized heating, and improves user comfort and commercial viability.
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Figure CN120991348A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of building heating, in particular to an application method of a graphene heating part. BACKGROUND
[0002] With the development of high technologies, graphene electric heating technology has been applied to house heating. However, if the graphene heating part is placed in an improper position, indoor temperature will be uneven, the human body will feel uncomfortable and health will be affected, and energy and installation cost will be wasted.
[0003] Cold and hot air circulation principle: the heated gas expands vertically upward, and at the same time, the expanded volume drives the gas to diffuse to the surrounding, and when the cold gas is encountered, the temperature is lowered and the gas shrinks and vertically descends. The shape is equivalent to the mushroom cloud generated by an atomic bomb explosion.
[0004] The cold and hot air circulation principle in the room is the same as above, but because the four walls, the roof and the ground are cold walls in six directions, the distance and shape of the cold and heat exchange are limited, and the flow direction of the gas is also limited, therefore, the shape of the cold and hot air circulation in the room is not a mushroom cloud; refer to the attached Figures 3-6 .
[0005] 1. The electric heating radiator is placed on the ground, and the bottom length of the heating surface is much smaller than the bottom length of the corresponding wall. According to the cold and hot air circulation principle, the part of the gas greater than the difference in the bottom length does not flow or has a small flow under the limitation of the six cold walls. Therefore, the part of the difference in the bottom length is a cold area, so that the indoor temperature is uneven, and the face is roasted near the heating surface. The back is cold after the warm wind is roasted in front of the chest, that is, the human body is from the front, back or left and right two directions, and the temperature difference is large, and the meridians are unbalanced, which is easy to get sick.
[0006] 2. The electric heating picture is placed at a certain height from the ground, and according to the principle that the heated gas expands vertically upward and the hot gas shrinks vertically downward when the temperature is lowered, the gas at a certain height from the ground does not flow or has a small flow. Therefore, the part at a certain height from the ground is a cold area. That is, the temperature in the room is hot at the top and cool at the bottom, which is most likely to get sick, such as cold air gathering at the bottom, causing symptoms such as nasal congestion, runny nose, sneezing, throat itching, coughing, dry skin, itching, dry and red eyes, fatigue, joint stiffness, neck and shoulder pain, loss of appetite, diarrhea, decreased attention, dizziness, headache and other symptoms of air conditioning disease.
[0007] In addition, the heating by using the electric heating film to cover the ground is called ground heating (cooling on the top is beneficial to health) or the heating by using the electric heating wallpaper to cover the wall, and the problem of uneven indoor temperature does not exist. However, the covering of the ground and the wall not only increases the energy consumption, but also increases the material cost, labor cost and the like, and is not easy to be accepted by the users. Especially for the old houses with decoration, and for the low-income families with central heating, it is not possible to let them re-decorate and give up the central heating.
[0008] In summary, the difficulty of popularization of the graphene electric heating heating technology is not general, which hinders the wide commercial application. SUMMARY
[0009] The purpose of the present application is to provide an application method of a graphene heating part, which solves the technical problems of improper use of conventional heating parts affecting health and high installation cost.
[0010] To solve the above technical problems, the present application provides the following technical solutions: The present application provides an application method of a graphene heating part, which comprises a long strip-shaped or long plate-shaped heating part shell, and a graphene heating film arranged in the heating part shell; the heating part is arranged at the bottom of the inner wall of a building or the bottom of at least one wall.
[0011] In the present example, the preset width of the heating part is obtained by dividing the area satisfying the required output heat for heating when the surface temperature of the heating part is lower than 81 degrees by the total length of the heating part.
[0012] In the present example, the lower end surface of the heating part is arranged in close contact with the ground.
[0013] In the present example, the heating part is preferably fixed to the skirting board at the bottom of the inner wall of the building.
[0014] In the present example, the heating part is preferably used as the skirting board on the inner wall of the building.
[0015] In the present example, the graphene heating body in the heating part shell can be replaced by one of a carbon crystal plate heating body, a carbon fiber and a quartz tube.
[0016] Compared with the prior art, the present application has the following beneficial technical effects: In the present application, by installing the heating part at the bottom of the inner wall of the building, the minimum heating installation area can be achieved, so that the installation cost and the use cost can be effectively reduced to meet the heating demand, and the technical conditions for replacing the central heating are provided to achieve commercial success. In addition, on the other hand, in combination with the cold and hot air circulation principle, the temperature of the internal space of the building can be uniformly distributed to protect the health of the user. Attached Figure Description
[0017] The invention will be further described below with reference to the accompanying drawings. Appendix Figure 1 This is a schematic diagram showing the airflow direction of the electric heating skirting board; Appendix Figure 2 A schematic diagram showing the airflow direction of the electrically heated skirting board to preserve the original geothermal energy. Appendix Figure 3 A schematic diagram of the hot and cold zones of an existing electric heater; Appendix Figure 4 This is a schematic diagram of the airflow direction of an existing electric heater; Appendix Figure 5 A schematic diagram of the hot and cold zones of an existing electrothermal system; Appendix Figure 6 This is a schematic diagram of the hot air flow direction in an existing electric heating system.
[0018] Figure label: 1. Ground; 2. Cold walls; 3. Ceiling; 4. Electric heating; 5. Cold area; 6. Hot area; 7. Electric heating painting; 8. Electric heating skirting board; 9. Existing underfloor heating. Detailed Implementation
[0019] This embodiment discloses an application method of a graphene heating element, wherein the heating element includes a strip-shaped or plate-shaped heating element shell and a graphene electric heating film installed inside the heating element shell; the heating element is installed on the bottom of the inner wall around the bottom of the building.
[0020] In this embodiment, the heating element is a series-connected structure, specifically, the heating elements in each segment are hinged together end to end.
[0021] In this specific embodiment, the standard width (heating area width) of the electric heating skirting board 8 is 0.09 meters, which is 9 / 250th the technical effect of a standard ceiling height of 2.5 meters. Compared with the effect of heating the entire wall with electric heating wallpaper, it saves 241 / 250th of the installation cost, thus reducing the difficulty of promoting graphene electric heating technology by 241 / 250ths. This provides the technical conditions for commercial success.
[0022] In this embodiment, the outer shell of the heating element is made of a thermally conductive material, and its outer shell may also be equipped with heat dissipation fins; the graphene heating element is one of a graphene heating plate, a graphene heating film, or a graphene heating tube installed inside the outer shell of the heating element; wherein the graphene heating film is preferred, which can reduce the installation volume.
[0023] In this embodiment, the principle of hot and cold air circulation is that the gas expands vertically upward when heated, and at the same time, the expanded volume drives the gas to spread around, and when it encounters cold air, the temperature decreases and the gas shrinks and falls vertically. Its shape is equivalent to the mushroom cloud generated by an atomic bomb explosion.
[0024] Reference Figure 1 And Figure 2 The principle of hot and cold air circulation in the room is the same as above, and the lower end surface of the heating member is in close contact with the ground 1, so that the heating member generates hot air, which rises from the bottom to the top of the inner wall of the building, and when it encounters cold wall 2, it falls downward again, so that the temperature of the interior space of the building is evenly distributed.
[0025] In this embodiment, the heating member is preferably fixed on the skirting board at the bottom of the inner wall of the building, and can be installed quickly on the original building by means of gluing or hanging, etc.
[0026] As another installation method, the heating member is installed as the skirting board on the inner wall of the building; wherein in the building without skirting board, the heating member can be designed as the structure of skirting board.
[0027] In this embodiment, the graphene heating body in the shell of the heating member can be replaced by one of carbon crystal plate heating body, carbon fiber and quartz tube.
[0028] Reference Figure 1 In the original building without geothermal decoration, the heating member (specifically, electric heating skirting board 8) is placed in close contact with the ground, and the total length is equal to the sum of the lengths of four cold walls 2.
[0029] Reference Figure 6 As another installation method, in the original geothermal decoration building, without removing the geothermal, only stopping using, and the centralized heating can not pay the heating fee, the heating member (electric heating skirting board 8) is placed in close contact with the ground, and the total length is equal to the sum of the lengths of four cold walls 2. Once the user experiences the application method of a kind of graphene heating member is not satisfied, the original geothermal heating can be restored, and the centralized heating can be paid for heating. In this way, the technical conditions for user experience and trial are provided.
[0030] In this embodiment, in the current situation that the centralized heating business only meets the specification standard that the indoor temperature is not lower than 18 degrees, but charges the heating fee for the whole heating period of 5 months, the application method of a kind of graphene heating member can automatically adjust the surface temperature of the preset heating surface according to the outdoor temperature and the user's preference for warmth or coolness, which not only improves the user's comfort, but also saves a part of the cost of centralized heating which is one-size-fits-all. In this way, the technical conditions for improving comfort and saving cost are provided.
[0031] Obviously, the application method of the graphene heating element meets the technical conditions for replacing central heating.
[0032] The above embodiments only describe the preferred modes of the present application, and do not limit the scope of the present application. Without departing from the design spirit of the present application, various modifications and improvements of the technical solutions of the present application made by those skilled in the art shall fall within the protection scope determined by the claims of the present application.
Claims
1. A method of using a graphene heating element, characterized by: The heating element comprises a long strip or long plate-shaped heating element shell, a graphene electric heating film arranged in the heating element shell; the heating element is arranged at the bottom of a wall or the bottom of a wall of a building.
2. The method of using a graphene heating element according to claim 1, wherein: The heating element is in a series splicing structure.
3. The method of using a graphene heating element according to claim 1, wherein: The preset width of the heating element is obtained by dividing the total area of the heating element surface satisfying the required output heat when the surface temperature is 81 DEG C by the total length of the heating element.
4. The method of using a graphene heating element according to claim 1, wherein: The lower end surface of the heating element is in close contact with the ground (1).
5. The method of using a graphene heating element according to any one of claims 1-4, wherein: The heating element is preferably fixed on the skirting board at the bottom of the inner wall of the building.
6. The method of using a graphene heating element according to any one of claims 1-4, wherein: The heating element is preferably used as the skirting board of the inner wall of the building.
7. A method of using a graphene heating element according to any one of claims 1-4, characterized in that: The graphene heating film in the heating element shell can be replaced by one of a carbon crystal plate heating body, carbon fiber and quartz tube.