Graphene carbon nanotube electric heating clothes
By combining graphene carbon nanotube heating film and copper foil electrode covering strips, the problem of localized cold resistance in winter clothing is solved, achieving localized heating and temperature regulation, improving the comfort and warmth of the clothing, and providing medical and health care functions.
Patent Information
- Application Number
- CN202520032614.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing winter clothing does not provide adequate warmth in areas that are not cold-resistant, and the use of traditional heating elements and conductive connections in graphene carbon nanotubes increases discomfort.
A combination of graphene carbon nanotube heating film and copper foil electrode strips is used. The copper foil is used as a flexible electrode, and the electrical and thermal conductivity of graphene carbon nanotubes are combined to form a heating component by sewing the fabric together. It is equipped with a switch and a charging module to achieve local heating and temperature regulation.
It improves the warmth and breathability of clothing, providing a warm yet comfortable experience, enhances the softness and durability of clothing, adapts to different environmental temperature changes, and has health care benefits.
Smart Images

Figure CN223682028U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to clothing technical field, concretely is a kind of graphene carbon nanotube electric heating clothing. BACKGROUND
[0002] Winter temperature is low, people do not pay attention to warm-keeping possibly bring rheumatism to body, along with the enhancement of people's health consciousness, health care to body is also more and more valued, thus commonly through cold weather to add clothes to protect own upper body and lower limbs;
[0003] The existing winter clothing, because the thickness of each part is consistent, cannot satisfy the local special cold-intolerant part of human body to strengthen the warmth, if all are made very thick, then it is inconvenient to walk when wearing;
[0004] The existing technology usually uses heating sheet to heat and keep warm, but the traditional heating sheet mainly uses fiber heating, and the connection is connected by plastic wire, and the existing technology uses graphene carbon nanotube as heating material, and still uses plastic wire to conduct electricity, which increases the discomfort of clothing wearing, therefore we need to propose a graphene carbon nanotube electric heating clothing. SUMMARY
[0005] The utility model discloses a kind of graphene carbon nanotube electric heating clothing, adopt graphene carbon nanotube heating film to carry out electric heating to the joint part of human body, to make clothing local heating to heat human body, improve the warm-keeping effect to human body, while graphene carbon nanotube heating film only heats to one side of human body, to guarantee the overall air permeability of clothing, improve the comfort of clothing wearing, to solve the problem proposed in the above background technology.
[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of graphene carbon nanotube electric heating clothing, comprising:
[0007] Clothing body, and heating assembly for heating is arranged in clothing body interior;
[0008] The heating assembly includes copper foil electrode cloth strip and multiple groups of heating pieces arranged on the copper foil electrode cloth strip;
[0009] The copper foil electrode cloth strip includes first cloth layer, first connecting copper foil and second cloth layer, and the first connecting copper foil is arranged between the first cloth layer and the second cloth layer;
[0010] The heating piece includes graphene carbon nanotube heating film and two groups of second connecting copper foil, the graphene carbon nanotube heating film is arranged between the two groups of second connecting copper foil, one side of the graphene carbon nanotube heating film is provided with reflection layer for heat guidance.
[0011] The heating element further comprises a first cloth and a second cloth, and first hot melt adhesive and second hot melt adhesive are arranged on opposite sides of the first cloth and the second cloth respectively.
[0012] The first connecting copper foil and the second connecting copper foil are integrally formed, and the first cloth layer and the second cloth layer are respectively sewn with the first cloth and the second cloth.
[0013] The first connecting copper foil is provided with two groups of electrode connecting ends, and switches are arranged on the two groups of electrode connecting ends, and the switches are electrically connected with a charging module.
[0014] The garment body is provided with a first binding part, and an elastic band is arranged in the first binding part.
[0015] The garment body is provided with a second binding part, and an elastic band is arranged in the second binding part.
[0016] Compared with the prior art, the utility model has the advantages that:
[0017] The utility model discloses a copper foil electrode cloth strip and graphene carbon nanotube heating film cooperate, use copper foil to do electrode, soft light and thin electrically good, can be bent and compound in cloth interior as electrode connecting wire, more flat and close than traditional plastic wire bundle connection, the conductivity and the heat conduction performance of graphene carbon nanotube film are stable, and copper foil lap joint can be used as good heating material, can keep stable heating performance under humid environment, thereby guarantee the heat preservation of the garment body worn on the body, the heating efficiency of graphene electric heating clothing is significantly greater than traditional heating clothing under low temperature environment, and the demand of human thermal comfort can be effectively satisfied. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is whole structure schematic diagram of the utility model;
[0019] Figure 2 It is heating assembly structure schematic diagram of the utility model;
[0020] Figure 3 It is heating assembly expansion structure schematic diagram of the utility model;
[0021] Figure 4 It is graphene carbon nanotube heating film structure schematic diagram of the utility model;
[0022] Figure 5 It is copper foil electrode cloth strip structure schematic diagram of the utility model.
[0023] In the figure: 1, clothing body; 2, heating assembly; 21, copper foil electrode cloth strip; 211, first cloth layer; 212, first connecting copper foil; 213, second cloth layer; 22, heating element; 221, first cloth; 222, first hot melt adhesive; 223, graphene carbon nanotube heating film; 224, second connecting copper foil; 225, second cloth; 226, second hot melt adhesive; 227, reflecting layer; 23, electrode connecting end; 24, switch; 25, charging module; 3, first binding part; 31, elastic band; 4, second binding part; 41, elastic band. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application. EMBODIMENT
[0025] Please refer to Figures 1-5 The present application provides a technical solution: a graphene carbon nanotube electric heating clothing, comprising:
[0026] The clothing body 1, and the clothing body 1 is internally provided with a heating assembly 2 for heating;
[0027] The heating assembly 2 comprises a copper foil electrode cloth strip 21 and a plurality of heating elements 22 arranged on the copper foil electrode cloth strip 21;
[0028] The copper foil electrode cloth strip 21 comprises a first cloth layer 211, a first connecting copper foil 212 and a second cloth layer 213, and the first connecting copper foil 212 is arranged between the first cloth layer 211 and the second cloth layer 213;
[0029] The heating element 22 comprises a graphene carbon nanotube heating film 223 and two groups of second connecting copper foils 224, the graphene carbon nanotube heating film 223 is arranged between the two groups of second connecting copper foils 224, and the graphene carbon nanotube heating film 223 is provided with a reflecting layer 227 on one side for guiding heat;
[0030] The graphene material has excellent heat conduction performance, can quickly convert electrical energy into heat energy, and release it in the form of far infrared rays. This heating method is not only efficient, but also can penetrate deep into the skin, providing a comfortable experience of warmth without dry heat. EMBODIMENT
[0031] The garment body 1 is used in the clothing such as a blanket, a scarf, an eye patch, a vest, a waist support, a knee pad, trousers, socks and the like. Through the cooperation between the copper foil electrode cloth strip 21 and the graphene carbon nanotube heating film 223, the copper foil is used as the electrode, and the cloth is double-sided reinforced. The conductivity and the bending resistance are met, and better softness is also achieved.
[0032] The heating element 22 further comprises a first cloth 221 and a second cloth 225. The opposite sides of the first cloth 221 and the second cloth 225 are respectively provided with a first hot melt adhesive 222 and a second hot melt adhesive 226. Compared with the traditional thick and heavy warm clothing, the garment is more light and comfortable to wear. Meanwhile, the fabric is soft and comfortable, and the wearer will not feel uncomfortable when wearing it.
[0033] The first connecting copper foil 212 and the second connecting copper foil 224 are integrally formed. The first cloth layer 211 and the second cloth layer 213 are respectively sewn with the first cloth 221 and the second cloth 225. The first connecting copper foil 212 is wrapped by the first cloth layer 211 and the second cloth layer 213. The conductivity and the bending resistance of the copper foil are met, and better softness is achieved. Thus, the comfort of the user wearing the garment body 1 is improved. The first cloth layer 211 and the second cloth layer 213 can also be polyvinyl chloride (PVC), polyethylene (PE), polypropylene (PP) and coated composite materials. The heating assembly can be directly made into an electric heating clothing by using different colors, materials and skin feeling of the cloth.
[0034] The first connecting copper foil 212 is provided with two groups of electrode connecting ends 23. The two groups of electrode connecting ends 23 are provided with switches 24. The switches 24 are electrically connected with a charging module 25. Through the switches 24 and the charging module 25, the user can freely adjust the temperature to realize personalized temperature management. The wearer can adjust the warmth according to his own needs and environmental changes at any time. The far infrared wavelength generated during the heating process is close to the wavelength of the human body. The water molecules in the cells can resonate, promote blood circulation, enhance metabolism, improve the immune ability of the body, and have a certain medical care effect in the long-term wearing, such as relieving joint pain and improving sleep quality.
[0035] The garment body 1 is provided with a first binding part 3. The elastic band 31 is installed in the first binding part 3, which is convenient for people of different body sizes to use.
[0036] The garment body 1 is provided with a second binding part 4. The elastic band 41 is arranged in the second binding part 4, which improves the comfort of wearing. Meanwhile, the garment can be used in clothing such as a shirt, trousers or a warm uterus belt, which improves the application range.
[0037] In the graphene carbon nanotube heating film 223, the carbon nanotube has good electrical conductivity and thermal conductivity, and after adding the graphene component, the square resistance can be reduced, the electrical conductivity can be improved, and the copper foil lap joint can be used as a good heating material,
[0038] At the same time, through the length-width-thickness design of the graphene carbon nanotube heating film 223, different resistances can be realized, and under a certain input current, the corresponding heating temperature requirement can be reached;
[0039] Moreover, the graphene carbon nanotube heating film 223 releases far infrared light when heating, which can improve microcirculation and enhance human immunity, and the heating effect of the graphene carbon nanotube heating film on the clothing is significantly better than that of traditional fiber heating clothing, which can effectively meet the demand of human thermal comfort.
[0040] In use, the user wears the clothing body 1 on the body, the first connecting copper foil 212 is wrapped by the first cloth layer 211 and the second cloth layer 213, and the second connecting copper foil 224 is arranged in the first cloth 221 and the second cloth 225, so as to ensure the waterproofness and durability of the product, and at the same time, the switch 24 is convenient for the charging module 25 to input current to the heating assembly 2 to provide energy source, when the current passes through the graphene carbon nanotube heating film 223, due to the extremely high electrical conductivity and thermal conductivity of the graphene carbon nanotube heating film 223, the electric energy will be quickly converted into heat energy, the electrons in the graphene carbon nanotube heating film 223 collide and scatter under the action of the electric field, resulting in energy loss and heat generation, so as to transfer heat to each part of the human body, so as to effectively transfer heat to the wearer and provide a warm and comfortable wearing experience, and the heating assembly 2 is waterproof treated, so that stable heating performance can be maintained even in a humid environment.
[0041] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A graphene carbon nanotube electric heating clothing, characterized in that, Include: The garment body (1), and the garment body (1) is provided with heating assembly (2) for heating inside; The heating assembly (2) includes copper foil electrode cloth strip (21) and multiple groups of heating pieces (22) arranged on the copper foil electrode cloth strip (21); The copper foil electrode cloth strip (21) includes a first cloth layer (211), a first connecting copper foil (212) and a second cloth layer (213), and the first connecting copper foil (212) is arranged between the first cloth layer (211) and the second cloth layer (213); The heating piece (22) includes a graphene carbon nanotube heating film (223) and two groups of second connecting copper foils (224), the graphene carbon nanotube heating film (223) is arranged between the two groups of second connecting copper foils (224), and one side of the graphene carbon nanotube heating film (223) is provided with a reflection layer (227) for guiding heat.
2. The graphene carbon nanotube electric heating clothing according to claim 1, characterized in that: The heating piece (22) further includes a first cloth (221) and a second cloth (225), and the opposite sides of the first cloth (221) and the second cloth (225) are respectively provided with a first hot melt adhesive (222) and a second hot melt adhesive (226).
3. A graphene carbon nanotube electric heating clothing according to claim 2, characterized in that: The first connecting copper foil (212) and the second connecting copper foil (224) are integrally formed, and the first cloth layer (211) and the second cloth layer (213) are respectively sewn with the first cloth (221) and the second cloth (225).
4. The graphene carbon nanotube electric heating clothing according to claim 3, characterized in that: The first connecting copper foil (212) is provided with two groups of electrode connecting ends (23), and the two groups of electrode connecting ends (23) are provided with switches (24), and the switches (24) are electrically connected with a charging module (25).
5. A graphene carbon nanotube electric heating clothing according to claim 4, characterized in that: The garment body (1) is provided with a first binding part (3), and the first binding part (3) is provided with an elastic band (31).
6. A graphene carbon nanotube electric heating clothing according to claim 5, characterized in that: The garment body (1) is provided with a second binding part (4), and the second binding part (4) is provided with an elastic band (41).