CN213096146U - Graphene heating jacket - Google Patents

Graphene heating jacket Download PDF

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Publication number
CN213096146U
CN213096146U CN202021211165.0U CN202021211165U CN213096146U CN 213096146 U CN213096146 U CN 213096146U CN 202021211165 U CN202021211165 U CN 202021211165U CN 213096146 U CN213096146 U CN 213096146U
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China
Prior art keywords
graphite alkene
garment piece
storage bag
electrode
film
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CN202021211165.0U
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Chinese (zh)
Inventor
吴立刚
叶德林
马宇飞
李正博
李明
曾垂彬
杨建武
曹达平
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Guangdong Kangxi Technology Co Ltd
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Guangdong Kangxi Technology Co Ltd
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Abstract

The utility model relates to a clothing technical field specifically discloses a graphite alkene jacket that generates heat, including preceding garment piece and back garment piece, its characterized in that: the utility model discloses a garment piece, including back garment piece, storage bag, graphite alkene heating film, first insulating waterproof layer, graphite alkene membrane, electrode layer and second insulating waterproof layer, the waist inboard of back garment piece is equipped with the storage bag, storage bag detachably installs on the waist inboard of back garment piece, and the metal fiber has been buried underground in the back garment piece, in the metal fiber wears into the storage bag, is provided with graphite alkene heating film in the storage bag, and graphite alkene heating film includes first insulating waterproof layer, graphite alkene membrane, electrode layer and second insulating waterproof layer, first insulating waterproof layer, graphite alkene membrane, electrode layer and second insulating waterproof. The storage bag that sets up through dismantling is convenient for install and detach graphite alkene heating film to the realization uses graphite alkene heating film in needs heating and cold-proof, adopts graphite alkene membrane as heating film, and it is good to have the stability of generating heat, and rate of heating is fast and the better advantage of homogeneity.

Description

Graphene heating jacket
Technical Field
The utility model relates to the technical field of clothing, especially, relate to a graphite alkene jacket that generates heat.
Background
The waistcoat is a jacket favored by people in winter. Business persons often wear a vest outside the shirt and then wear a suit coat, often called a three-piece garment. The vest, which is the middle garment between the shirt and the suit, must fit right. The existing waistcoat adopts single thin fabric to avoid swelling, and has poor heat preservation and cold protection effects.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to prior art current situation, provide a graphite alkene jacket that generates heat fast, the stability is good that generates heat.
In order to achieve the above purpose, the utility model adopts the following technical scheme: the utility model provides a graphite alkene jacket that generates heat, includes preceding garment piece and back garment piece, its characterized in that: the utility model discloses a garment piece, including back garment piece, storage bag, graphite alkene heating film, first insulating waterproof layer, graphite alkene membrane, electrode layer and second insulating waterproof layer, the waist inboard of back garment piece is equipped with the storage bag, storage bag detachably installs on the waist inboard of back garment piece, and the metal fiber has been buried underground in the back garment piece, in the metal fiber wears into the storage bag, is provided with graphite alkene heating film in the storage bag, and graphite alkene heating film includes first insulating waterproof layer, graphite alkene membrane, electrode layer and second insulating waterproof layer, first insulating waterproof layer, graphite alkene membrane, electrode layer and second insulating waterproof.
The upper end of the inner side of the waist is provided with a connecting part, and the connecting part is connected with the upper end of the storage bag through a zipper.
The metal fibers are arranged into two groups, the two groups of metal fibers are connected with a power supply, the tail ends of the two groups of metal fibers penetrate into the storage bag, and two ends of the electrode layer are respectively connected with the tail ends of the two groups of metal fibers.
The electrode layer is arranged on the upper surface of the graphene film and comprises end electrodes symmetrically arranged on the graphene film, and the end electrodes are formed on the graphene film in an ink-jet printing or screen printing mode.
The electrode layer further comprises a single electrode which is made of a plurality of silver pastes and formed on the graphene film in an ink-jet printing or screen printing mode, and the single electrodes are connected with the end part electrodes.
The plurality of single electrodes are symmetrically arranged between the end electrodes and are parallel.
The single electrode is formed by repeatedly arranging two groups of electrode units which are symmetrically arranged, each electrode unit is formed by a U-shaped section and a vertical section which is positioned in the U-shaped cavity and is vertical to the end face of the U-shaped section, and the U-shaped sections of the two groups of electrode units are arranged in a staggered mode.
The first insulating waterproof layer and the second insulating waterproof layer are both made of PVC films, PE films or PET films.
The metal fiber is wrapped with an insulating waterproof protective layer, and the insulating waterproof protective layer is a PVC film, a PE film or a PET film.
The beneficial effects of the utility model reside in that: the storage bag that sets up through dismantling is convenient for install and detach graphite alkene heating film to the realization uses graphite alkene heating film in needs heating and cold-proof, adopts graphite alkene membrane as heating film, and it is good to have the stability of generating heat, and rate of heating is fast and the better advantage of homogeneity.
Drawings
Fig. 1 is a front view of a graphene heating jacket.
Fig. 2 is a front view of the rear panel.
Fig. 3 is a front view of the graphene heating film.
Fig. 4 is an exploded view of the graphene heating film.
Fig. 5 is a front view of the electrode.
Fig. 6 is a perspective view of an electrode.
In the figure: 1. the novel waterproof garment comprises a front garment piece, a rear garment piece, a storage bag, a metal fiber, a graphene heating film, a first insulating waterproof layer, a graphene film, a graphene layer, an electrode layer, a graphene electrode 531, an end electrode 532, a single electrode 533, an electrode unit, a U-shaped section 5331, a U-shaped section 5332, a vertical section 54 and a second insulating waterproof layer.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings and embodiments:
please refer to fig. 1-6, the utility model discloses a graphene heating jacket, including front garment piece 1 and back garment piece 2, the waist inboard of back garment piece 2 is equipped with storage bag 3, storage bag 3 detachably installs on the waist inboard of back garment piece 2, metal fiber 4 has been buried underground in back garment piece 2, metal fiber 4 wears into in the storage bag 3, be provided with graphene heating film 5 in the storage bag 3, graphene heating film 5 includes first insulating and waterproof layer 51, graphene film 52, electrode layer 53 and second insulating and waterproof layer 54, first insulating and waterproof layer 51, graphene film 52, electrode layer 53 and second insulating and waterproof layer 54 are fixed in proper order, the both ends of electrode layer 53 are connected with metal fiber 4 respectively.
In order to facilitate the detachment of the storage bag 3, the upper end of the storage bag 3 is only required to be movably connected with the inner side of the waist. That is, the upper end of the inner side of the waist is provided with a connecting part, and the connecting part is connected with the upper end of the storage bag 3 through a zipper or a button.
The metal fibers 4 are arranged into two groups, the two groups of metal fibers 4 are connected with a power supply, the tail ends of the two groups of metal fibers 4 penetrate into the storage bag 3, and two ends of the electrode layer 53 are connected with the tail ends of the two groups of metal fibers 4 respectively. The metal fiber 4 is wrapped with an insulating waterproof protective layer which is a PVC film, a PE film or a PET film. The metal fiber 4 is a fiber-shaped material which has high metal content, is continuously distributed by metal materials and has a transverse dimension in micron order, is used as a lead for power transmission, electric signal transmission and the like in intelligent clothing, and is embedded into a fabric, so that the metal fiber 4 can achieve a good electromagnetic wave shielding effect.
The electrode layer 53 is disposed on the upper surface of the graphene film 52, the electrode layer 53 includes end electrodes 531 symmetrically disposed on the graphene film 52, and the end electrodes 531 are formed on the graphene film 52 by inkjet printing or screen printing.
The end electrode 531 may be made of copper foil or silver paste, or may be made of a composite material of copper foil and silver paste.
The electrode layer 53 further includes a single electrode 532 made of a plurality of silver pastes and formed on the graphene film 52 by inkjet printing or screen printing, and the plurality of single electrodes 532 are connected to the end electrode 531.
The plurality of single electrodes 532 are symmetrically disposed between the end electrodes 531, and the plurality of single electrodes 532 are parallel.
The single electrode 532 is formed by repeatedly arranging two sets of symmetrically arranged electrode units 533, the electrode units 533 are formed by U-shaped sections 5331 and vertical sections 5332 which are positioned in the U-shaped cavities and perpendicular to the end surfaces of the U-shaped sections 5331, and the U-shaped sections 5331 of the two sets of electrode units 533 are arranged up and down in a staggered manner. Tip electrode 531 and the cooperation of many symmetries set up single electrode 532 between tip electrode 531, enable graphite alkene heating film 5 circular telegram back, and voltage is even between each electrode, forms a plurality of parallelly connected electric currents for each region of graphite alkene heating film 5 evenly generates heat simultaneously, has solved the inhomogeneous problem that generates heat among the prior art, simultaneously, makes graphite alkene heating film 5 can generate heat fast under the low pressure condition.
The first insulating waterproof layer 51 and the second insulating waterproof layer 54 are made of a PVC film, a PE film or a PET film.
Of course, the above illustration is only a preferred embodiment of the present invention, and the scope of the present invention is not limited thereto, so all equivalent changes made in the principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1. The utility model provides a graphite alkene jacket that generates heat, includes preceding garment piece (1) and back garment piece (2), its characterized in that: the utility model discloses a garment piece, including back garment piece (2), storage bag (3) are equipped with the waist inboard of back garment piece (2), storage bag (3) detachably installs on the waist inboard of back garment piece (2), and metal fiber (4) have been buried underground in back garment piece (2), in metal fiber (4) wear into storage bag (3), be provided with graphite alkene heating film (5) in storage bag (3), graphite alkene heating film (5) include first insulating and waterproof layer (51), graphite alkene membrane (52), electrode layer (53) and second insulating and waterproof layer (54), first insulating and waterproof layer (51), graphite alkene membrane (52), electrode layer (53) and second insulating and waterproof layer (54) are fixed in proper order, and the both ends of electrode layer (53) are connected with metal fiber (4) respectively.
2. The graphene heating jacket according to claim 1, wherein: the upper end of the inner side of the waist is provided with a connecting part, and the connecting part is connected with the upper end of the storage bag (3) through a zipper.
3. The graphene heating jacket according to claim 1, wherein: the metal fibers (4) are arranged into two groups, the two groups of metal fibers (4) are connected with a power supply, the tail ends of the two groups of metal fibers (4) penetrate into the storage bag (3), and two ends of the electrode layer (53) are connected with the tail ends of the two groups of metal fibers (4) respectively.
4. The graphene heating jacket according to claim 1, wherein: the electrode layer (53) is arranged on the upper surface of the graphene film (52), the electrode layer (53) comprises end electrodes (531) symmetrically arranged on the graphene film (52), and the end electrodes (531) are formed on the graphene film (52) through ink-jet printing or screen printing.
5. The graphene heating jacket according to claim 4, wherein: the electrode layer (53) further comprises a single electrode (532) which is made of a plurality of silver pastes and is formed on the graphene film (52) in an ink-jet printing or screen printing mode, and the single electrodes (532) are all connected with the end electrode (531).
6. The graphene heating jacket according to claim 5, wherein: the single electrodes (532) are symmetrically arranged between the end electrodes (531), and the single electrodes (532) are parallel.
7. The graphene heating jacket according to claim 6, wherein: the single electrode (532) is formed by repeatedly arranging two groups of electrode units (533) which are symmetrically arranged, each electrode unit (533) is formed by a U-shaped section (5331) and a vertical section (5332) which is positioned in the U-shaped cavity and is vertical to the end face of the U-shaped section (5331), and the U-shaped sections (5331) of the two groups of electrode units (533) are arranged in a staggered mode from top to bottom.
8. The graphene heating jacket according to claim 1, wherein: the first insulating waterproof layer (51) and the second insulating waterproof layer (54) are both made of PVC films, PE films or PET films.
9. The graphene heating jacket according to claim 1, wherein: the metal fiber (4) is wrapped with an insulating waterproof protective layer, and the insulating waterproof protective layer is a PVC film, a PE film or a PET film.
CN202021211165.0U 2020-06-24 2020-06-24 Graphene heating jacket Active CN213096146U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021211165.0U CN213096146U (en) 2020-06-24 2020-06-24 Graphene heating jacket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021211165.0U CN213096146U (en) 2020-06-24 2020-06-24 Graphene heating jacket

Publications (1)

Publication Number Publication Date
CN213096146U true CN213096146U (en) 2021-05-04

Family

ID=75673250

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021211165.0U Active CN213096146U (en) 2020-06-24 2020-06-24 Graphene heating jacket

Country Status (1)

Country Link
CN (1) CN213096146U (en)

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