CN203279215U - Carbon fiber heating cloth - Google Patents

Carbon fiber heating cloth Download PDF

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Publication number
CN203279215U
CN203279215U CN 201320172905 CN201320172905U CN203279215U CN 203279215 U CN203279215 U CN 203279215U CN 201320172905 CN201320172905 CN 201320172905 CN 201320172905 U CN201320172905 U CN 201320172905U CN 203279215 U CN203279215 U CN 203279215U
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China
Prior art keywords
carbon fiber
heating cloth
carbon
fiber heating
loop
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Expired - Fee Related
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CN 201320172905
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Chinese (zh)
Inventor
王俊人
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Xuzhou Star Amperex Technology Ltd
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Individual
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Abstract

The utility model relates to a carbon fiber heating cloth. The carbon fiber heating cloth comprises an insulation fiber woven belt woven by insulation fibers in a warp and weft manner, carbon fibers which are in parallel arrangement are inserted into the insulation fiber woven belt horizontally or vertically in a penetrating manner, the two ends of each carbon fiber are respectively connected with an electrode, each loop between the two electrodes comprises at least two carbon fibers which are in series connection, and the resistance value of each loop is identical. Because each loop between the two electrodes comprises at least two carbon fibers which are in series connection, the resistance values of the carbon fiber loops between the two electrodes are changed, and the resistance values of the carbon fibers do not need to be changed; the surface heating temperature of the carbon fiber heating cloth is changed, and therefore the surface temperature of the carbon fiber heating cloth can be changed with no need for carbon fibers with different resistance values, and the carbon fiber heating cloth is convenient to use; because the resistance value of each loop between the electrodes is identical, the heating value of each loop is identical, and the surface temperature of the whole heating cloth is uniform.

Description

A kind of carbon fiber heating cloth
[technical field]
The utility model relates to a kind of heating cloth, particularly a kind of carbon fiber heating cloth.
[background technology]
Heating at present, heating products and application thereof, generally to adopt more environmental protection and energy-conservation material to be made, the application of the heating/heating function of carbon fiber is exactly the characteristics of utilizing itself fibrous carbon material, utilize its corrosion resistance, anti-oxidant (the easy oxidation of metal causes partial breakdown), high stability, life-span is longer, the characteristics such as thermal conversion rate high (more than 98%), its heating/heating effect is relatively commonly used take oil firing burning electricity as auxiliary thermal source/the energy-conservation 30-50% of heating heating system, install and use simple and convenient, environmental protection and energy saving, with low cost.To be that carbon fiber is parallel intert in non-conductive fibre cloth existing heating cloth product, the carbon fiber two ends are connected with respectively electrode, if control and change its surface heat temperature, it is the logical resistance value that changes carbon fiber between two electrodes, make the surface temperature of carbon fibre heating cloth change, just can reach like this purpose of the heating cloth that produces the different surfaces temperature with regard to the carbon fiber that needs selection different size resistance value.
[utility model content]
The utility model provides a kind of carbon fiber heating cloth, need to select the carbon fiber of different size resistance value to change the technical problem of heating cloth surface temperature to solve above-mentioned carbon fiber heating cloth.
In order to solve the problems of the technologies described above, the utility model provides a kind of carbon fiber heating cloth, comprise the non-conductive fibre braid over braid that is formed by warp and parallel braiding by non-conductive fibre, described non-conductive fibre braid over braid radially or be interspersed with the carbon fiber that is arranged parallel to each other on broadwise, the two ends of described carbon fiber are connected with electrode, have two carbon fiber serial connections between described two electrodes in each loop at least, the resistance value in described each loop is identical.
the beneficial effects of the utility model are: owing to having two carbon fiber serial connections in each loop between two electrodes at least, change has just occured in the resistance value between such two electrodes on the carbon fiber loop, and do not need to change the resistance value of carbon fiber itself, make the surface heat temperature of carbon fiber heating cloth change, therefore need not select the carbon fiber of different size resistance value just can change the surface temperature of carbon fiber heating cloth, very convenient, because the resistance value in each loop between electrode is identical, the heating in each loop is identical like this, thereby the surface temperature of whole heating cloth is very even.
On the basis of technique scheme, the utility model can also be done following improvement.
Further, described carbon fiber is that the carbon nano-fiber silk forms.
adopt the beneficial effect of above-mentioned further scheme to be: due to the heat generating components use is the carbon nano-fiber silk, the carbon nano-fiber silk has low-density, high ratio modulus, high strength, high conductivity, the characteristics such as good thermal stability and specific area are large, the carbon nano-fiber heating cloth that is made by the carbon nano-fiber silk like this has good heating effect, integral surface has uniform heating temp, its tension, counter-bending good with compressive property, make heating cloth have reliable quality and long useful life, its heating efficiency also can improve simultaneously, has good energy-conserving and environment-protective effect.
On the basis of technique scheme, the utility model can also be done following improvement.
Further, described non-conductive fibre is the high-temperature insulation fiber.
Adopt the beneficial effect of above-mentioned further scheme to be: because the resistance to elevated temperatures of high-temperature insulation fiber is good, can bear higher temperature, like this, carbon fiber heating cloth with high-temperature insulation fibrage can reach higher temperature, guarantee to heat cloth and have good high-temperature behavior, can apply it to the use field of higher temperature heating, except the daily heating such as heating used in everyday, insulation, the use field of heating, can also apply it to the industrial application that needs higher temperature, greatly increase the scope of application of heating cloth.
On the basis of technique scheme, the utility model can also be done following improvement.
Further, described high-temperature insulation fiber is glass fibre or Teflon fiber.
Adopt the beneficial effect of above-mentioned further scheme to be: because the glass fibre heatproof is high, do not fire, anti-corruption, tensile strength is high, the characteristics such as electrical insulating property is good, and water absorption is little, and coefficient of elasticity is high, and rigidity is good, like this, high-temperature carbon fiber heating cloth is just very high temperature resistant, while tension, the performances such as protection against the tide; Because the Teflon fiber has significant thermal stability, the performances such as moisture-resistant, wear-resisting, corrosion-resistant, electric insulation, like this, high-temperature carbon fiber heating cloth just has good resistance to elevated temperatures and corrosion resistance, can be applied to than in rugged environment.
On the basis of technique scheme, the utility model can also be done following improvement.
Further, described carbon fiber heating cloth two sides scribbles exotic material or is covered with high temperature resistance diaphragm.
Adopt the beneficial effect of above-mentioned further scheme to be: high-temperature resistant coating and high temperature resistance diaphragm can play a protective role, and make carbon fiber heating cloth can also further do not played the effect of insulation by Foreign Object Damage, have increased the security performance of carbon fiber heating cloth.
On the basis of technique scheme, the utility model can also be done following improvement.
Further, described electrode takes the mode of longitude and latitude establishment to be connected with carbon fiber exothermic wire by plain conductor.
Adopt the beneficial effect of above-mentioned further scheme to be: because electrode takes the mode of longitude and latitude establishment to be connected with carbon fiber exothermic wire by plain conductor, the electrode of high-temperature heating cloth just is consistent with the main body that heats cloth like this, becomes an integral body.
On the basis of technique scheme, the utility model can also be done following improvement.
Further, described plain conductor is copper cash or tinned wird.
Adopt the beneficial effect of above-mentioned further scheme to be: because the copper cash conductance is high, the electrical property of carbon fiber heating cloth will significantly improve like this, and tinned wird has more increased the solderability of copper cash, and the switching performance of itself and carbon fiber can further improve.
[description of drawings]
Fig. 1 is the structure diagram of the utility model carbon fiber heating cloth,
Fig. 2 is the utility model carbon fiber heating cloth node joint partial schematic diagram.
In accompanying drawing, the list of parts of each label representative is as follows:
1, non-conductive fibre, 2, carbon nano-fiber, 3, electrode, 4, the carbon fiber joining zone, 41, the wire of carbon fiber joining zone, 5, power line, 6, controller, 7, attaching plug
[embodiment]
Below in conjunction with drawings and Examples, the utility model is further described.
the structure diagram of the utility model carbon fiber heating cloth as shown in Figure 1, carbon fiber heating cloth node joint partial schematic diagram as shown in Figure 2, comprise the non-conductive fibre braid over braid that is formed through knitting device by non-conductive fibre 1, the footpath of the non-conductive fibre braid over braid parallel several carbon nano-fibers 2 that are interspersed with that make progress, four carbon fiber joining zones 4 are arranged on the loop of the carbon fiber 2 of the connection of two electrode wires 3, 4 li of carbon fiber joining zones are connected in series two carbon fibers 2 in order with wire 41, the resistance value of the carbon fiber on each loop is identical, power line 5 is connected to the two ends of electrode wires 3, controller 6 is connected between attaching plug 7 and power line 5.
when giving carbon nano-fiber 2 energising, be converted into heat energy and outwards disperse out in the mode of far infrared radiation by carbon nano-fiber 2, due to the heat generating components use is the carbon nano-fiber silk, the carbon nano-fiber silk has low-density, high ratio modulus, high strength, high conductivity, the characteristics such as good thermal stability and specific area are large, the carbon fiber heating cloth that is made by the carbon nano-fiber silk like this has good heating effect, integral surface has uniform heating temp, its tension, counter-bending good with compressive property, make heating cloth have reliable quality and long useful life, its heating efficiency also can improve simultaneously, has good energy-conserving and environment-protective effect.In loop by the carbon fiber 2 that connects at two electrodes 3, carbon fiber 2 is serially connected, make its resistance change, and the resistance value that does not need to change two adjacent carbon fibers 2 can change the carbon fiber heating temperature, concrete application under very convenient condition of different temperatures, and need not select the carbon fiber of multiple resistance value specification.
The utility model carbon fiber heating cloth, owing to adopting the heating of high-temperature insulation fiber and nanometer carbon fiber exothermic body, have heat radiation evenly, quick heating, characteristics that efficient is high, has stronger radiation and convection effect, electric conversion rate reaches more than 99%, without electromagnetic interference and pollution, free from dust, noiselessness, heat up rapidly in use, not think that the traditional heating product can be than traditional electrical warmer energy-conservation 50%; Product is in heating, the far infrared radiation that also has the 3-20um wavelength, its radiation transfer ratio is more than 70%, and higher than the national standard of like product, far infrared is described as " light of life " by modern medicine circle, studies show that, human body is absorber preferably for the far infrared greater than 6um, and after receiving far infrared, the tissue of human body and resonance cell absorb, the energy enhanced activity, the minimizing superabundant fats enhances metabolism.The infrared wavelength of heating wire is 3-20um, and human body is played far infrared health care and radiation physiotherapy function, and smokeless and dust free is moist, pollution-free, is the new green environment protection energy-conserving product; Product weight is light, pollution-free, firm in structure, be not less than 100,000 hours useful life, and is easy to use, is widely used.
Non-conductive fibre 1 in this implementation column is selected the high-temperature insulation fiberglass fiber, and its hot strength is high, and coefficient of elasticity is high, and rigidity is good, and apparatus with shock absorbing is large, and is very durable in use; Have noninflammability, chemical resistance is good, and antiseptic property is good; Water absorption is little, has good water resistance; Raw material are extensive, and cost is lower.It is the carbon nano-fiber of 3K that carbon nano-fiber 2 in this implementation column is selected specification, its surface scribbles temperature-resistant insulation layer, its quick heating, heat radiation evenly, 5-10 can reach the surface Working Temperature of carbon fiber heating cloth second, in use without electromagnetic interference and pollution, free from dust, noiselessness; Tensile strength is high, not frangibility; Corrosion-resistant, unattenuated, be difficult for oxidation, long service life, security performance is than high.In this implementation column, the carbon fiber of every adjacent two is at a distance of 7.3 millimeters, individual carbon fibers filament length degree is 1400 millimeters, its surface heat temperature is that 90 degree can be used for family expenses and hang warm the use, and the spacing that can change the effective length of each loop carbon fiber and every adjacent two carbon fibers simultaneously reaches different surface temperatures and reaches the time of electrothermal cloth surface temperature.
In addition, high-temperature insulation fiber 1 also can be selected the Teflon fiber, and it has significant thermal stability, the performances such as moisture-resistant, wear-resisting, corrosion-resistant, electric insulation, like this, carbon fiber heating cloth just has good resistance to elevated temperatures and corrosion resistance, can be applied to than in rugged environment.
Scribble exotic material or be covered with high temperature resistance diaphragm on the two sides of whole carbon fiber heating cloth in addition; high-temperature resistant coating and high temperature resistance diaphragm can play a protective role like this; make the carbon fiber heating cloth can be by Foreign Object Damage; can also further play the effect of insulation, increase the security performance of carbon fiber.
Its electrode 3 can select the metal guides such as copper cash or tinned wird to the transmission of carrying out the signal of telecommunication, is chosen according to cost, electrical efficiency and concrete applied environment.
Above carbon fiber heating cloth provided by the utility model is described in detail, used specific case herein principle of the present utility model and execution mode are set forth, the explanation of above embodiment just is used for helping to understand core concept of the present utility model; Simultaneously, for one of ordinary skill in the art, according to thought of the present utility model, all will change in specific embodiments and applications, in sum, this description should not be construed as restriction of the present utility model.

Claims (7)

1. carbon fiber heating cloth, comprise the non-conductive fibre braid over braid that is formed by warp and parallel braiding by non-conductive fibre, described non-conductive fibre braid over braid radially or be interspersed with the carbon fiber that is arranged parallel to each other on broadwise, the two ends of described carbon fiber are connected with electrode, it is characterized in that, have two carbon fiber serial connections between described two electrodes in each loop at least, the resistance value in described each loop is identical.
2. carbon fiber heating cloth according to claim 1, is characterized in that, described carbon fiber is that the carbon nano-fiber silk forms.
3. carbon fiber heating cloth according to claim 1, is characterized in that, described non-conductive fibre is the high-temperature insulation fiber.
4. carbon fiber heating cloth according to claim 3, is characterized in that, described high-temperature insulation fiber is glass fibre or Teflon fiber.
5. carbon fiber heating cloth according to claim 1, is characterized in that, described carbon fiber heating cloth two sides scribbles exotic material or is covered with high temperature resistance diaphragm.
6. carbon fiber heating cloth according to claim 1, is characterized in that, described electrode takes the mode of longitude and latitude establishment to be connected with carbon fiber exothermic wire by plain conductor.
7. carbon fiber heating cloth according to claim 6, is characterized in that, described plain conductor is copper cash or tinned wird.
CN 201320172905 2013-04-09 2013-04-09 Carbon fiber heating cloth Expired - Fee Related CN203279215U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320172905 CN203279215U (en) 2013-04-09 2013-04-09 Carbon fiber heating cloth

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201320172905 CN203279215U (en) 2013-04-09 2013-04-09 Carbon fiber heating cloth

Publications (1)

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CN203279215U true CN203279215U (en) 2013-11-06

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CN 201320172905 Expired - Fee Related CN203279215U (en) 2013-04-09 2013-04-09 Carbon fiber heating cloth

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103753873A (en) * 2013-11-28 2014-04-30 单县天成玻纤有限公司 Infrared-ray heating cloth and manufacturing method thereof
CN104105231A (en) * 2013-04-09 2014-10-15 王俊人 Carbon fiber heating cloth
CN106343875A (en) * 2016-08-30 2017-01-25 浙江欧导自动化设备有限公司 Carbon fiber heating curtain
CN108253875A (en) * 2018-01-16 2018-07-06 清远建滔暖芯技术有限公司 The detection control method and system of a kind of graphene carbon fiber cloth

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104105231A (en) * 2013-04-09 2014-10-15 王俊人 Carbon fiber heating cloth
CN103753873A (en) * 2013-11-28 2014-04-30 单县天成玻纤有限公司 Infrared-ray heating cloth and manufacturing method thereof
CN106343875A (en) * 2016-08-30 2017-01-25 浙江欧导自动化设备有限公司 Carbon fiber heating curtain
CN108253875A (en) * 2018-01-16 2018-07-06 清远建滔暖芯技术有限公司 The detection control method and system of a kind of graphene carbon fiber cloth

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C14 Grant of patent or utility model
GR01 Patent grant
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Effective date of registration: 20180507

Address after: 221300 west of Pizhou Yanshan Road, Pizhou City, Jiangsu Province

Patentee after: Xuzhou star Amperex Technology Limited

Address before: No. 201, Hongxing Road, Shui Guan Town, Langzhong, Sichuan Province

Patentee before: Wang Junren

TR01 Transfer of patent right
DD01 Delivery of document by public notice

Addressee: Wang Junren

Document name: Notification of Passing Examination on Formalities

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20131106

Termination date: 20190409

CF01 Termination of patent right due to non-payment of annual fee