Graphene infrared heating module

By introducing a moisture-absorbing and quick-drying layer and a moisture-wicking pad layer into the graphene infrared heating module, the problem of decreased comfort and module performance caused by excessive humidity in protective gear is solved, achieving effective sweat removal and improved module stability.

CN223452836UActive Publication Date: 2025-10-21NANYANG INST OF TECH +1
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Patent Information

Application Number
CN202422604644.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-10-21
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

Existing graphene infrared heating modules suffer from poor moisture wicking due to the presence of a waterproof layer during use. Excessive humidity affects comfort and may lead to decreased thermal conductivity, oxidation, instability, and shortened lifespan.

Method used

A moisture-absorbing and quick-drying layer one and a moisture-absorbing and quick-drying layer two are set in the graphene infrared heating module, combined with a moisture-wicking pad layer to form a multi-layer structure to absorb and expel sweat, prevent excessive humidity, and ensure the stability and lifespan of the module.

Benefits of technology

The design of the moisture-wicking and quick-drying layer and the moisture-wicking pad layer effectively wicks away sweat, keeps the inside of the protective gear dry, avoids the negative impact of excessive humidity on module performance, improves user comfort, and extends module life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of protectors, and particularly relates to a graphene infrared heating module which comprises a far infrared heating assembly arranged in a protector. The far infrared heating assembly comprises a graphene heating strip, a conductive layer for providing current, an insulating layer and a waterproof layer, the insulating layer and the waterproof layer are used for isolating a graphene film and the conductive layer and preventing short circuit and potential safety hazards, and one side of the waterproof layer is provided with a first moisture absorption and quick drying layer for absorbing sweat; blood circulation can be accelerated through the far infrared heating assembly, a human body can feel warm, so that the purpose of protecting knees or waists and the like is achieved, sweat in the protective tool can be discharged outwards through the first moisture absorption quick-dry layer, the second moisture absorption quick-dry layer and the moisture guiding cushion layer, and the protective tool is convenient to use. The condition that the comfort level is reduced due to excessive humidity in the protector caused by the fact that sweat cannot be discharged is avoided, and meanwhile the condition that the heat-conducting property of the far infrared heating assembly is reduced, oxidation, stability and service life are reduced and the insulating property is reduced due to excessive humidity is also avoided.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of protective equipment, and specifically relates to a graphene infrared heating module. BACKGROUND

[0002] The graphene heating is the process of converting electric energy into heat energy, a large number of free electrons will be excited by electric energy to produce irregular motion, namely Brown motion, during which the carbon atoms in the resistance layer will collide and rub each other to generate heat energy, and part of the heat energy is transmitted outward in the form of far infrared, when the wavelength of far infrared is approximately the same as the vibration frequency of water contained in the human body or water contained in the blood, blood circulation can be accelerated, and the human body will feel warm, thereby achieving the purpose of protecting the knees and the waist and the like, in order to avoid the problems of heat conduction performance reduction, oxidation, stability and service life reduction and insulation performance reduction caused by humidity to the graphene, a waterproof layer is arranged in the graphene infrared heating module, however, during daily use of the protective equipment, sweating may occur at the part where the protective equipment is worn, due to the existence of the waterproof layer and the graphene heating module, the moisture removal effect of the protective equipment is low, and excessive humidity will reduce the comfort of the wearer. CONTENT

[0003] The utility model provides a kind of graphene infrared heating module, with by moisture absorption quick dry layer one, moisture absorption quick dry layer two and wet pad layer can export the sweat in the inside of protective equipment, avoid the case that sweat cannot be discharged to lead to the situation that the humidity in the inside of protective equipment is too large and comfort is reduced.

[0004] The utility model provides the following technical scheme: including the far infrared heating assembly being arranged in the inside of protective equipment, it is characterized in that: the far infrared heating assembly includes graphene heating strip, the conductive layer for providing current, the insulating layer and waterproof layer for isolating graphene film and conductive layer and preventing short circuit and security hidden danger, one side of the waterproof layer is equipped with the moisture absorption quick dry layer one for absorbing sweat, the other side of the waterproof layer is equipped with the moisture absorption quick dry layer two for making absorbed sweat as soon as possible dry, the moisture absorption quick dry layer one and the moisture absorption quick dry layer two are equipped with a plurality of wet pad layers for conducting humidity between them.

[0005] Among them, the conductive layer is located at the outside of the far infrared heating assembly, the insulating layer is located at the outside of the conductive layer, and the waterproof layer is located at the outside of the insulating layer.

[0006] Among them, the graphene heating strip is in a curved state, and the conductive layer, the insulating layer and the waterproof layer are matched with the shape of the graphene heating strip.

[0007] The side of the moisture conduction pad layer is fixedly connected with the inner side of the moisture absorption and quick drying layer one, and the side, away from the moisture absorption and quick drying layer one, of the moisture conduction pad layer is fixedly connected with the moisture absorption and quick drying layer two.

[0008] The moisture conduction pad layer is complementary to the far infrared heating assembly.

[0009] The far infrared heating assembly can accelerate blood circulation, so that the human body feels warm, thereby achieving the purpose of protecting the knee or waist, and the moisture absorption and quick drying layer one, the moisture absorption and quick drying layer two and the moisture conduction pad layer can discharge the sweat in the protective equipment to the outside, avoid the case that the sweat cannot be discharged, the humidity in the protective equipment is too large, the comfort degree is reduced, and the case that the heat conduction performance of the far infrared heating assembly is reduced, oxidation, stability and service life are reduced and the insulation performance is reduced is avoided.

[0010] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0011] Figure 1 It is a three-dimensional structure schematic view of the utility model;

[0012] Figure 2 It is an internal structure schematic view of the utility model;

[0013] Figure 3 It is the A part of the utility model Figure 2 enlarged view;

[0014] Figure 4 It is a cross-sectional structure schematic view of the utility model;

[0015] In the drawing: 1, far infrared heating assembly; 11, graphene heating strip; 12, conductive layer; 13, insulation layer; 14, waterproof layer; 2, moisture absorption and quick drying layer one; 3, moisture absorption and quick drying layer two; 4, moisture conduction pad layer. DETAILED DESCRIPTION

[0016] Please refer to Figures 1-4 The utility model provides the following technical scheme: including setting in the far infrared heating assembly 1 of protective equipment inside, its characterized in that: far infrared heating assembly 1 includes graphene heating strip 11, the conductive layer 12 for providing electric current, the insulation layer 13 and waterproof layer 14 for isolating graphene film and conductive layer and preventing short circuit and security hidden danger, the side of waterproof layer 14 is equipped with the moisture absorption and quick drying layer one 2 for absorbing sweat, the other side of waterproof layer 14 is equipped with the moisture absorption and quick drying layer two 3 for making absorbed sweat as soon as possible dry, and the moisture absorption and quick drying layer one 2 and the moisture absorption and quick drying layer two 3 are equipped with a plurality of moisture conduction pad layers 4 for conducting humidity.

[0017] In the embodiment: the far infrared heating assembly 1 arranged inside the protective equipment, for the protective equipment such as knee pads and waist pads, by arranging the far infrared heating assembly 1 inside, the far infrared heating assembly 1 can generate far infrared heat inside the protective equipment, when the wavelength of the far infrared generated by the far infrared heating assembly 1 is approximately the same as the vibration frequency of the water contained in the human body or the water contained in the blood, the blood circulation can be accelerated, the human body will feel warm, thereby achieving the purpose of protecting the knees and the waist, the far infrared heating assembly 1 comprises a graphene heating strip 11, a conductive layer 12 for providing current, an insulating layer 13 for isolating the graphene film and the conductive layer and preventing short circuit and safety hazards, and a waterproof layer 14, the heating of the graphene heating strip 11 is the process of converting electrical energy into heat energy, after being electrified, a large number of free electrons will be excited by electrical energy and produce irregular motion, that is, Brown motion, during which the carbon atoms in the resistance layer of the far infrared heating assembly 1 will collide and rub with each other, thereby generating heat energy, in this process, due to the high thermal conductivity and low heat capacity of graphene itself, after being electrified, only a small amount of heat needs to be generated to raise the temperature, and the heat is quickly transferred away, part of the heat energy is transferred outward in the form of far infrared, the heat energy conversion rate of this part can reach more than 80%, at the same time, the far infrared energy emitted by the far infrared heating assembly 1 after being electrified and the human body produce the same frequency resonance, which is better absorbed by the human body, the conductive layer 12 can provide current, which is usually a thin layer of metal or other conductive material, due to the good electrical conductivity of the graphene heating strip 11, in order to prevent the current from flowing away directly through the surface of the graphene heating strip 11, the insulating layer 13 needs to be arranged outside the graphene heating strip 11, to ensure that the current can effectively generate heat inside the graphene, and the waterproof layer 14 can intercept water to avoid the influence of water on the graphene heating strip 11, when the humidity is too large, it is easy to cause the graphene heating strip 11 to have the problems of decreased heat conduction performance, oxidation, decreased stability and service life, and decreased insulation performance, one side of the waterproof layer 14 is provided with a moisture absorption and quick drying layer one 2 for absorbing sweat, the moisture absorption and quick drying layer one 2 is a moisture absorption and quick drying fabric woven from yarns mixed from cotton fibers and H-shaped cross-section fibers, which has high moisture absorption and moisture conductivity, therefore, the side of the moisture absorption and quick drying layer one 2 away from the far infrared heating assembly 1 can absorb water, which is the moisture absorption side, and the water is transmitted to the side of the moisture absorption and quick drying layer one 2 connected with the far infrared heating assembly 1 through the conduction of the fibers, the other side of the waterproof layer 14 is provided with a moisture absorption and quick drying layer two 3 for quickly draining the absorbed sweat, the moisture absorption and quick drying layer two 3 has the same material as the moisture absorption and quick drying layer one 2, and the side of the moisture absorption and quick drying layer two 3 connected with the far infrared heating assembly 1 is the moisture absorption side, and the side of the moisture absorption and quick drying layer two 3 away from the far infrared heating assembly 1 is the diffusion side, when the water enters the inside of the moisture absorption and quick drying layer two 3, it will be transmitted to the other side of the moisture absorption and quick drying layer two 3,Due to the humidity difference with the outside air, the moisture will evaporate into the outside air, avoiding the case that the sweat cannot be discharged to cause the internal humidity of the protector to be too large and the comfort to be reduced. A plurality of moisture-conducting pads 4 are arranged between the moisture-absorbing and quick-drying layer one 2 and the moisture-absorbing and quick-drying layer two 3, and the moisture-conducting pads 4 are made of the same material as the moisture-absorbing and quick-drying layer one 2 and the moisture-absorbing and quick-drying layer two 3, but the thickness of the moisture-conducting pads 4 is the same as that of the far-infrared heating assembly 1. The moisture absorbed by the moisture-absorbing and quick-drying layer one 2 can be transmitted to the moisture-absorbing and quick-drying layer two 3 through the moisture-conducting pads 4, and the blood circulation can be accelerated through the far-infrared heating assembly 1, so that the human body feels warm, thereby achieving the purpose of protecting the knees or the waist. The sweat in the protector can be discharged outward through the moisture-absorbing and quick-drying layer one 2, the moisture-absorbing and quick-drying layer two 3 and the moisture-conducting pads 4, thereby avoiding the case that the sweat cannot be discharged to cause the internal humidity of the protector to be too large and the comfort to be reduced, and also avoiding the case that the heat conduction performance of the far-infrared heating assembly 1 is reduced, the far-infrared heating assembly 1 is oxidized, the stability and the service life of the far-infrared heating assembly 1 are reduced, and the insulation performance is reduced due to the excessive humidity.

[0018] The conductive layer 12 is located outside the far-infrared heating assembly 1, the insulating layer 13 is located outside the conductive layer 12, and the waterproof layer 14 is located outside the insulating layer 13. The current can be provided through the conductive layer 12, the current can be prevented from flowing directly through the surface of the graphene heating strip 11 through the insulating layer 13, and the water can be intercepted through the waterproof layer 14.

[0019] The graphene heating strip 11 is in a curved state, and the conductive layer 12, the insulating layer 13 and the waterproof layer 14 match the shape of the graphene heating strip 11. The graphene heating strip 11 is in an S-shaped arrangement state, and the curved position of the graphene heating strip 11 does not contact.

[0020] One side of the moisture-conducting pad 4 is fixedly connected to the inner side of the moisture-absorbing and quick-drying layer one 2, and the side of the moisture-conducting pad 4 away from the moisture-absorbing and quick-drying layer one 2 is fixedly connected to the moisture-absorbing and quick-drying layer two 3. The gap between the moisture-absorbing and quick-drying layer one 2 and the moisture-absorbing and quick-drying layer two 3 can be filled through the moisture-conducting pad 4, and the moisture between the moisture-absorbing and quick-drying layer one 2 and the moisture-absorbing and quick-drying layer two 3 can be transmitted.

[0021] The plurality of moisture-conducting pads 4 are complementary to the far-infrared heating assembly 1, and the moisture-conducting pads 4 do not contact the far-infrared heating assembly 1.

[0022] The working principle and use process of the utility model: the moisture absorption side of the moisture absorption and quick drying layer one 2 far from the far infrared heating assembly 1 can absorb moisture, and the moisture is transmitted to the side of the moisture absorption and quick drying layer one 2 and the far infrared heating assembly 1 connected through the conduction of the fiber, the moisture conducting pad layer 4 is same with the moisture absorption and quick drying layer one 2 and the moisture absorption and quick drying layer two 3 in material, but the thickness of the moisture conducting pad layer 4 is same with the far infrared heating assembly 1, the moisture absorbed by the moisture absorption and quick drying layer one 2 can be transmitted to the moisture absorption and quick drying layer two 3 through the moisture conducting pad layer 4, the moisture absorption and quick drying layer two 3 is same with the moisture absorption and quick drying layer one 2 in material, and the side of the moisture absorption and quick drying layer two 3 and the far infrared heating assembly 1 connected is the moisture absorption side, the side of the moisture absorption and quick drying layer two 3 far from the far infrared heating assembly 1 is the diffusion surface, when the moisture enters the inside of the moisture absorption and quick drying layer two 3, will be transmitted to the other side of the moisture absorption and quick drying layer two 3, because of the humidity difference with the outside air, then the moisture will evaporate to the outside air.

Claims

1. A graphene infrared heating module, comprising a far infrared heating assembly (1) arranged inside a protective device, characterized in that: The far infrared heating assembly (1) comprises a graphene heating strip (11), a conductive layer (12) for providing current, an insulating layer (13) for isolating the graphene film and the conductive layer and preventing short circuit and safety hazards, and a waterproof layer (14), one side of the waterproof layer (14) is provided with a moisture absorption and quick drying layer one (2) for absorbing sweat, the other side of the waterproof layer (14) is provided with a moisture absorption and quick drying layer two (3) for quickly draining the absorbed sweat, and a plurality of moisture conducting pad layers (4) are arranged between the moisture absorption and quick drying layer one (2) and the moisture absorption and quick drying layer two (3) for conducting moisture.

2. The graphene infrared heating module of claim 1, wherein: The conductive layer (12) is located outside the far infrared heating assembly (1), the insulating layer (13) is located outside the conductive layer (12), and the waterproof layer (14) is located outside the insulating layer (13).

3. The graphene infrared heating module of claim 2, wherein: The graphene heating strip (11) is in a curved state, and the conductive layer (12), the insulating layer (13) and the waterproof layer (14) are matched with the shape of the graphene heating strip (11).

4. The graphene infrared heating module of claim 3, wherein: One side of the moisture conducting pad layer (4) is fixedly connected with the inner side of the moisture absorption and quick drying layer one (2), and the side of the moisture conducting pad layer (4) away from the moisture absorption and quick drying layer one (2) is fixedly connected with the moisture absorption and quick drying layer two (3).

5. The graphene infrared heating module of claim 4, wherein: The plurality of moisture conducting pad layers (4) are complementary to the far infrared heating assembly (1).