CN205491227U - Flexible ultra -thin carbon fiber electricity heat recombination material - Google Patents
Flexible ultra -thin carbon fiber electricity heat recombination material Download PDFInfo
- Publication number
- CN205491227U CN205491227U CN201620139069.7U CN201620139069U CN205491227U CN 205491227 U CN205491227 U CN 205491227U CN 201620139069 U CN201620139069 U CN 201620139069U CN 205491227 U CN205491227 U CN 205491227U
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- China
- Prior art keywords
- conductive electrode
- cloth
- carbon fiber
- bronze medal
- nonwoven felt
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- Professional, Industrial, Or Sporting Protective Garments (AREA)
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Abstract
The utility model provides a flexible ultra -thin carbon fiber electricity heat recombination material, belongs to electric heating material technical field, and its technical scheme is: it comprises carbon fiber nonwoven felt -cloth and copper conductive electrode, and copper conductive electrode sets up respectively at the edge of the planar relative both sides of carbon fiber nonwoven felt -cloth, and zonulae occludens is as an organic whole, can directly tailor, makes into various electric heat products, it also has the protection decorative layer by TPU membrane, shuttle are weaved and the reflection stratum is constituteed. The utility model discloses a carbon fiber nonwoven felt -cloth releases far infrared and heats human body or surrounding environment when copper conductive electrode switches on, the TPU membrane of protection decorative layer has waterproof and insulating function, and the shuttle is weaved and is played the effect of holistic tensile strength of enrichment and toughness, and far infrared can be reflected in the reflection stratum, plays cold -proof effect. The utility model has the advantages of the material is frivolous, the compliance good, the intensification is fast, even stable, waterproof, energy -saving power generates heat, can regard as the novel raw and other materials of electric blanket, electric heat clothing and other electric heat articles for use.
Description
Technical field
This utility model relates to a kind of carbon fiber electric heating composite, belongs to electric heating material technical field.
Background technology
At present, the application of Electric radiant Heating Film and electric heating cloth technology has opened up broader prospect for making electric heating clothes and electric heater articles for use.Electric radiant Heating Film is the translucent polyester thin film that can generate heat after a kind of energising, and, hot pressing processed by conductive special ink, metal current-carrying bar is made between insulation polyester film.With Electric radiant Heating Film as heater during work, heat is sent in the form of radiation space, makes human body and object first obtain warm.Electric radiant Heating Film production technology is simple, and the cost of raw material is relatively low, and its range of application is the most extensive.But Electric radiant Heating Film is owing to smearing ink, and quality is hard the most soft, and its surface easily bends fracture, and leakage current is bigger.Electric heating cloth is parallel and the braiding structure of warp composition, comprises heating wire, be provided with positive and negative electrode line at warp edge in its parallel.Human body or surrounding is heated in thermal-radiating mode after heating wire energising.The electric heating cloth scope of application is relatively wide, but electric heating cloth complex process, and the cost of raw material is higher.Meanwhile, electric heating cloth is line heating, generates heat uneven, easily produces sparking phenomenon when heating wire and electrode wires loose contact.
In sum, the electric heating clothes made with Electric radiant Heating Film and electric heating cloth and other electrothermal articles have an obvious deficiency, mainly can not lightening, heating be line heating, generate heat uneven, heat up slowly, pliability poor, it is therefore necessary to improved.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of flexible ultra-thin carbon fiber electric heating composite, and this composite electrothermal material is frivolous, flexibility good, quick heating, heating are uniform and stable, also has waterproof, the advantage of energy saving.
The technical scheme solving above-mentioned technical problem is:
A kind of flexible ultra-thin carbon fiber electric heating composite, it is made up of carbon-fibre nonwoven felt-cloth and copper conductive electrode, copper conductive electrode includes the first bronze medal conductive electrode and the second bronze medal conductive electrode, first bronze medal conductive electrode and the second bronze medal conductive electrode are respectively arranged at the edge of the opposite sides of carbon-fibre nonwoven felt-cloth plane, and the first bronze medal conductive electrode, the second bronze medal conductive electrode are integrated with carbon-fibre nonwoven felt-cloth compact siro spinning technology.
Above-mentioned flexible ultra-thin carbon fiber electric heating composite, described carbon-fibre nonwoven felt-cloth is made up of Staple carbon fibers.
Above-mentioned flexible ultra-thin carbon fiber electric heating composite, described first bronze medal conductive electrode and the second bronze medal conductive electrode contact with carbon-fibre nonwoven felt-cloth and wear conducting resinl.
Above-mentioned flexible ultra-thin carbon fiber electric heating composite, it also has protected decoration layer to be combined, protected decoration layer is laid on the both sides of electrothermal layer respectively, protected decoration layer is made up of TPU membrane, woven fabric and reflecting layer, TPU membrane is covered on the two sides of carbon-fibre nonwoven felt-cloth respectively, woven fabric is respectively overlay on the two sides of TPU membrane, coating reflection layer on the lateral surface of woven fabric.
The beneficial effects of the utility model are:
Carbon-fibre nonwoven felt-cloth of the present utility model is releasing far infrared to human body or ambient heat when copper conductive electrode is energized, can directly cutting, be fabricated to various electric heating products;Can also lay protected decoration layer outside electrothermal layer, the TPU membrane of protected decoration layer has waterproof and insulate function, and woven fabric plays increases the overall hot strength of material and the effect of toughness, and warming effect can be played with reflecting far-infrared ray in reflecting layer.
This utility model, to being a kind of innovation for existing thermo electric material, has that material is frivolous, flexibility good, quick heating, heating are uniform and stable, waterproof, the advantage of energy saving, can be as the novel raw material of electric blanket, electric heating clothes and other electrothermal articles.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
In figure, labelling is as follows: carbon-fibre nonwoven felt-cloth the 1, first bronze medal conductive electrode the 2, second bronze medal conductive electrode 3, TPU membrane 4, woven fabric 5, reflecting layer 6.
Detailed description of the invention
Showing in figure, this utility model is made up of carbon-fibre nonwoven felt-cloth the 1, first bronze medal conductive electrode 2 and the second bronze medal conductive electrode 3.Carbon-fibre nonwoven felt-cloth the 1, first bronze medal conductive electrode 2 and the second bronze medal conductive electrode 3 constitute electrothermal layer, the carbon-fibre nonwoven felt-cloth 1 of electrothermal layer is releasing far infrared to human body or ambient heat when first bronze medal conductive electrode the 2, second bronze medal conductive electrode 3 is energized, electrothermal layer can directly cutting, be fabricated to various electric heating products.
Figure shows, carbon-fibre nonwoven felt-cloth 1 is made up of Staple carbon fibers, first bronze medal conductive electrode 2 and the second bronze medal conductive electrode 3 are respectively arranged at the edge of the opposite sides of carbon-fibre nonwoven felt-cloth 1 plane, first bronze medal conductive electrode the 2, second bronze medal conductive electrode 3 is integrated with carbon-fibre nonwoven felt-cloth 1 compact siro spinning technology, and the first bronze medal conductive electrode and the second bronze medal conductive electrode contact with carbon-fibre nonwoven felt-cloth and wear conducting resinl.
Showing in figure, can also lay protected decoration layer outside electrothermal layer, protected decoration layer is laid on the both sides of electrothermal layer respectively, becomes thermo electric material by compound to electrothermal layer and protected decoration layer.
Showing in figure, protected decoration layer is made up of TPU membrane 4, woven fabric 5 and reflecting layer 6.TPU membrane 4 is covered on the two sides of carbon-fibre nonwoven felt-cloth 1 respectively, and TPU membrane 4 has waterproof and insulate function, can improve the safety coefficient of material, and the electric heating products using this material to make has preferable safety.PVC film or PE film can also be used, but the heat resisting temperature of PVC film or PE film is not as TPU membrane 4.
Showing in figure, woven fabric 5 is respectively overlay on the two sides of TPU membrane 4, and woven fabric 5 can play increases the overall hot strength of material and the effect of toughness, makes material have higher practicality and ruggedness.
Showing in figure, coating reflection layer 6 on the lateral surface of woven fabric 5, warming effect can be played with reflecting far-infrared ray in reflecting layer 6.In actual production, can need to select single spreading reflecting layer 6 or double spread reflecting layer 6 according to product type or client.
Claims (4)
1. a flexible ultra-thin carbon fiber electric heating composite, it is characterized in that: it is made up of carbon-fibre nonwoven felt-cloth (1) and copper conductive electrode, copper conductive electrode includes the first bronze medal conductive electrode (2) and the second bronze medal conductive electrode (3), first bronze medal conductive electrode (2) and the second bronze medal conductive electrode (3) are respectively arranged at the edge of the opposite sides of carbon-fibre nonwoven felt-cloth (1) plane, and the first bronze medal conductive electrode (2), the second bronze medal conductive electrode (3) are integrated with carbon-fibre nonwoven felt-cloth (1) compact siro spinning technology.
Flexible ultra-thin carbon fiber electric heating composite the most according to claim 1, it is characterised in that: described carbon-fibre nonwoven felt-cloth (1) is made up of Staple carbon fibers.
Flexible ultra-thin carbon fiber electric heating composite the most according to claim 2, it is characterised in that: described first bronze medal conductive electrode (2) and the second bronze medal conductive electrode (3) contact with carbon-fibre nonwoven felt-cloth (1) and wear conducting resinl.
Flexible ultra-thin carbon fiber electric heating composite the most according to claim 3, it is characterized in that: it also has protected decoration layer, protected decoration layer is laid on the both sides of electrothermal layer respectively, protected decoration layer is made up of TPU membrane (4), woven fabric (5) and reflecting layer (6), TPU membrane (4) is covered on the two sides of carbon-fibre nonwoven felt-cloth (1) respectively, woven fabric (5) is respectively overlay on the two sides of TPU membrane (4), coating reflection layer (6) on the lateral surface of woven fabric (5).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620139069.7U CN205491227U (en) | 2016-02-25 | 2016-02-25 | Flexible ultra -thin carbon fiber electricity heat recombination material |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620139069.7U CN205491227U (en) | 2016-02-25 | 2016-02-25 | Flexible ultra -thin carbon fiber electricity heat recombination material |
Publications (1)
Publication Number | Publication Date |
---|---|
CN205491227U true CN205491227U (en) | 2016-08-17 |
Family
ID=56679010
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201620139069.7U Expired - Fee Related CN205491227U (en) | 2016-02-25 | 2016-02-25 | Flexible ultra -thin carbon fiber electricity heat recombination material |
Country Status (1)
Country | Link |
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CN (1) | CN205491227U (en) |
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2016
- 2016-02-25 CN CN201620139069.7U patent/CN205491227U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160817 |