WO2020082498A1 - 一种3d充气石墨烯发热保暖服装 - Google Patents

一种3d充气石墨烯发热保暖服装 Download PDF

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Publication number
WO2020082498A1
WO2020082498A1 PCT/CN2018/117914 CN2018117914W WO2020082498A1 WO 2020082498 A1 WO2020082498 A1 WO 2020082498A1 CN 2018117914 W CN2018117914 W CN 2018117914W WO 2020082498 A1 WO2020082498 A1 WO 2020082498A1
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WIPO (PCT)
Prior art keywords
layer
clothing
pocket
warm clothing
heating
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PCT/CN2018/117914
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English (en)
French (fr)
Inventor
王方明
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苏州市兴丰强纺织科技有限公司
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Publication of WO2020082498A1 publication Critical patent/WO2020082498A1/zh

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    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/002Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment
    • A41D13/005Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment with controlled temperature
    • A41D13/0051Heated garments

Definitions

  • the invention relates to the technical field of warm clothing, in particular to a 3D inflatable graphene heating warm clothing.
  • warm clothing such as down jackets and cotton clothing is usually used to withstand low-temperature environments, but warm clothing such as down jackets and cotton clothing can only be worn in low-temperature seasons, resulting in shorter wearing periods of warm clothing and warm clothing to keep people's hands warm The effect is poor, requiring personnel to wear gloves or carry hand warmers, etc., which causes inconvenience to go out and is not practical.
  • the purpose of the present invention is to provide a 3D inflatable graphene heating warm clothing in order to solve the above problems, solving the problem that existing warm clothing such as down jackets and cotton clothing can only be worn in low temperature seasons, resulting in a shorter wearing period of warm clothing and keeping warm Clothing has a poor heat preservation effect on personnel's hands, requiring personnel to wear gloves or carry hand warmers, etc., causing inconvenience to go out and poor practicality.
  • the present invention provides a technical solution:
  • a 3D inflatable graphene heat-generating warm clothing includes a warm clothing front, a warm clothing back and a warm clothing heat source.
  • the warm clothing front and the warm clothing back are sewn to form a warm clothing.
  • the warm clothing includes a body and sleeves.
  • the front of the warm clothing is equipped with a heat source of warm clothing.
  • the front of the warm clothing and the back of the warm clothing adopt a double-layer setting.
  • the front of the warm clothing and the back of the warm clothing include the inner fabric of the warm clothing and the outer fabric of the warm clothing.
  • thermoplastic polyurethane film layer The first thermoplastic polyurethane film layer, the second thermoplastic polyurethane film layer, hot-melt adhesive dots, air flow channel, adhesive layer, heat insulation layer, warm clothing top layer, thermal conductive fiber layer and warm clothing inner layer, in the warm clothing
  • the first thermoplastic polyurethane film layer is adhered to the side of the outer fabric of the thermal insulation layer adjacent to the outer layer of the warm clothing
  • the second thermoplastic polyurethane film layer is adhered to the side of the outer thermal insulation fabric adjacent to the inner layer of the thermal clothing
  • a thermoplastic polyurethane film layer and a second thermoplastic polyurethane film layer are bonded with hot-melt adhesive dots, and the first thermoplastic polyurethane film layer and the second
  • the plastic polyurethane film layers are 3D pressed together by hot-melt adhesive dots to form an air flow channel, the air flow channels are arranged in a regular hexagon, and the outer fabric of the thermal insulation clothing is adhered by an adhesive layer on the side away from the first thermoplastic poly
  • the heating source of the warm clothing includes an outer pocket, an inner pocket, a heating sheet insert pocket, a graphene heating sheet, a velcro, a connecting wire, a wire, a connecting plug, and a zipper structure.
  • the outer pocket is provided in On the front of the warm clothing of the body, the outer pocket is composed of an outer layer of the pocket and an inner layer of the pocket, the inner layer of the pocket is integrated with the front of the warm clothing of the body, and the outer layer of the pocket is sewn on the front of the warm clothing of the body ,
  • the inner pocket of the outer pocket is provided with an inner pocket, the inner pocket is sewed with a heating chip insert pocket, the heating chip insert pocket is provided with two, two graphene heating inserts are installed inside the heating pocket insert ,
  • the graphene heating sheet is provided with two, the two graphene heating sheets are electrically connected by a connecting wire, the connecting wire is electrically connected to the wire through a connecting plug, and the two heating sheets are inserted into the pocket of the bag
  • a velcro is installed at the place, and a zipper structure is installed on the inner layer of the pocket at the mouth of the inner pocket.
  • the zipper structure is composed of a limit code, a zipper tooth and a zipper slider. Both
  • a belt buckle is sewn on the front of the warm clothing and on the back of the warm clothing, and there are a plurality of belt buckles.
  • a belt is inserted through the belt buckle.
  • the front of the warm clothing A battery plate is installed on the inner side, and the battery plate is electrically connected to the connection line of the graphene heating sheet through a wire.
  • the battery plate is provided at the bottom of the front of the warm clothing, and the battery plate is provided with a charging port and a body
  • the air nozzle structure includes an air injection port opened on the front of the warm clothing and a sealing plug installed on the air injection port.
  • the air injection port is arranged in a circle, and the seal plug and the air injection port can be detachably sealed and installed , One side of the air injection port communicates with the airflow channel on the front of the warm clothing and the back of the warm clothing.
  • the velcro includes a hook surface layer disposed on one side of the heating sheet insertion pocket and a fleece layer disposed on the other side of the heating sheet insertion pocket, between the fleece layer and the hook surface layer Corresponding settings.
  • the graphene heating sheet is arranged in a regular hexagonal structure.
  • the outer pocket composed of the outer layer of the pocket and the inner layer of the pocket is provided corresponding to the position of the cuff.
  • the adhesive layer is made of polyurethane glue material.
  • the output voltage of the battery board is 5V.
  • the structure of the invention is reasonable and simple, and it is convenient to use.
  • the 3D inflatable graphene heating clothing is filled with air in the air flow channel of the clothing, and the graphene heating is used to heat the air and the clothing to achieve the purpose of keeping warm.
  • the effective combination of air warmth and heat insulation makes the warm clothing resistant to lower temperatures, suitable for colder harsh climates, and can be worn in spring and autumn, increasing the wearing period of the warm clothing, installing the heat generating film inside the pocket of the clothing, increasing At the same time, the clothing has the function of warming the hands, and the clothing has the function of warming the hands, and reduces the discomfort caused by the heating film to the personnel, and the cooperation of the heating film with the heating film slot and the Velcro, which facilitates the accurate positioning and installation of the heating film on the warm clothing It is easy to disassemble and more practical.
  • Figure 1 is a schematic structural view of the present invention
  • FIG. 2 is a schematic diagram of the structure of the front of the warm clothing and the back of the warm clothing of the present invention
  • FIG. 3 is a schematic view of the structure of the air flow channel of the present invention.
  • Fig. 4 is a schematic diagram of the structure of a heat source of a thermal insulation garment of the present invention.
  • thermoplastic polyurethane film The first thermoplastic polyurethane film; 24. The second thermoplastic polyurethane film; 25 , Hot melt adhesive dots; 26, air flow channel; 27, adhesive layer; 28, thermal insulation layer; 29, thermal clothing top layer; 210, thermal fiber layer; 211, thermal clothing inner layer; 3.
  • thermal clothing heat source 31, the outer layer of the pocket; 32, the inner layer of the pocket; 33, the inner pocket; 34, the heating sheet insert pocket; 35, the graphene heating sheet; 36, the Velcro; 37, the connecting wire; 38, the wire; 39, the connection plug; 310, limit code; 311, zipper with teeth; 312, zipper slider; 4, belt; 5, battery board; 6, air injection port; 7, sealing plug.
  • this specific embodiment adopts the following technical solution: a 3D inflatable graphene heating and warm clothing, including a warm clothing front 1, a warm clothing back 2 and a warm clothing heating source 3, the warm clothing front 1 It is sewn with the warm clothing back 2 to form a warm clothing.
  • the warm clothing includes a body and sleeves.
  • the warm clothing front 1 is equipped with a warm clothing heat source 3 on the body.
  • the warm clothing front 1 and the warm clothing back 2 are used Double-layer arrangement, the front face 1 and the back face 2 of the warm clothing include the inner fabric 21 of the warm clothing, the outer fabric 22 of the warm clothing, the first thermoplastic polyurethane film layer 23, the second thermoplastic polyurethane film layer 24, and hot melt adhesive dots 25.
  • Air flow channel 26 adhesive layer 27, thermal insulation layer 28, warm clothing top layer 29, thermal fiber layer 210 and warm clothing inner layer 211, the inner layer fabric 21 of the warm clothing is close to the outer fabric layer 22 of the warm clothing
  • a first thermoplastic polyurethane film layer 23 is adhered on one side, and a second thermoplastic polyurethane film layer 24 is adhered on the side of the outer layer fabric 22 of the warm clothing adjacent to the inner layer fabric 21 of the warm clothing, and the first thermoplastic polyurethane Hot melt adhesive dots 25 are adhered to the film layer 23 and the second thermoplastic polyurethane film layer 24, and the first thermoplastic polyurethane film layer 23 and the second thermoplastic polyurethane film layer 24 are pressed together by the hot melt adhesive dots 253D to form an air flow
  • the air flow channel 26 is arranged in a regular hexagonal shape, and the thermal insulation outer layer 22 on the side away from the first thermoplastic polyurethane film layer 23 is bonded with a heat insulation layer 28 by an adhesive layer 27, the partition On one side of the thermal insulation layer 28,
  • the heating source 3 of the warm clothing includes an outer pocket, an inner pocket 33, a heating sheet insertion pocket 34, a graphene heating sheet 35, a velcro 36, a connecting wire 37, a wire 38, a connecting plug 39 and a zipper structure.
  • the outer pocket is provided in On the front 1 of the warm clothing of the body, the outer pocket is composed of an outer layer 31 of the pocket and an inner layer 32 of the pocket.
  • the inner layer 32 of the pocket is integrally provided with the front 1 of the warm clothing of the body.
  • the outer layer 31 of the pocket is sewn on the clothing On the front 1 of the body warm clothing, an inner pocket 33 is opened on the inner layer 32 of the outer pocket.
  • the inner pocket 33 is sewn with a heating chip insert pocket 34, and the heating chip insert pocket 34 is provided with two, two A graphene heating sheet 35 is installed inside the heating sheet insertion pocket 34, two of the graphene heating sheets 35 are provided, two graphene heating sheets 35 are electrically connected by a connecting wire 37, and the connecting wire 37
  • the connecting plug 39 is electrically connected to the wire 38, the two heating element insertion pockets 34 are provided with a velcro 36 at the mouth of the pocket, and the inner pocket 33 is provided with a zipper structure on the inner layer 32 of the pocket at the mouth of the pocket.
  • Limit code 310 zipper with teeth 3 11 and a zipper puller 312
  • a limit code 310 is provided at both ends of the inner pocket 33
  • a zipper connecting tooth 311 is provided on the inner pocket 33 between the limit codes 310
  • the zipper connecting tooth 311 is engaged
  • a zipper puller 312 is installed, and a belt buckle is sewn on the front 1 of the warm clothing and the back 2 of the warm clothing.
  • a plurality of belt buckles are provided.
  • a belt 4 is inserted through the belt buckle.
  • a battery plate 5 is installed on the inner side. The battery plate 5 is electrically connected to the connecting line 37 of the graphene heating sheet 35 through a wire 38.
  • the battery plate 5 is disposed at the bottom of the front face 1 of the warm clothing and on the battery plate 5 A charging port is provided, and an air nozzle structure is provided on the clothing.
  • the air nozzle structure includes an air injection port 6 provided on the front face 1 of the warm clothing and a sealing plug 7 installed on the air injection port 6.
  • the air injection port 6 is provided in a circular shape.
  • the sealing plug 7 is detachably sealed and installed between the gas injection port 6, one side of the gas injection port 6 communicates with the air flow channel 26 on the front 1 of the warm clothing and the back 2 of the warm clothing, and the Velcro 36 includes heat
  • the hook surface layer on the side of the sheet insert pocket 34 and The fleece layer placed on the other side of the heating sheet insertion pocket 34 is correspondingly arranged between the fleece layer and the hook surface layer
  • the graphene heating sheet 35 is arranged in a regular hexagonal structure to ensure the stability of the airflow channel 26 and improve the airflow channel 26 tightness
  • the outer pocket composed of the outer layer 31 of the pocket and the inner layer 32 of the pocket is set corresponding to the position of the cuff
  • the adhesive layer 27 is made of polyurethane glue material, has strong adhesion and good stability
  • the battery The output voltage of the board 5 is 5V, which is stable and the heating temperature is moderate.
  • the use state of the present invention is: during use, the hot-melt adhesive dots 25 are pressed by 3D so that the outer layer fabric 22 of the warm clothing and the inner layer fabric 21 of the warm clothing form a regular hexagonal air flow channel through the indentation of the hot-melt adhesive dots 25 26.
  • the graphene heating sheet 35 When the graphene heating sheet 35 is not needed, the graphene heating sheet 35 is heated from the outer pocket The heating sheet is taken out of the pocket 34 to reduce the loss of the heating sheet when wearing.
  • the structure of the invention is reasonable and simple, and the use is convenient.
  • the 3D inflatable graphene hair Warm clothing filled with air in the air flow channel 26 of the clothing, using graphene heating to heat the air and clothing to achieve the purpose of keeping warm, effectively combining air warming with heat preservation, making the warm clothing resistant to lower temperatures, suitable for colder harsh climate, can be worn in spring and autumn, increase the wearing period of warm clothing, install the heating film inside the pocket of the clothing, while increasing the warmth function of the clothing, make the clothing have the function of warming the hands, and reduce the heating film to the personnel wearing
  • the discomfort, and the combination of the heating element with the heating element insert pocket 34 and the Velcro 36 are convenient for the precise positioning and installation of the heating element on the warm clothing, which is convenient for installation and disassembly and more practical.

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  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Textile Engineering (AREA)
  • Professional, Industrial, Or Sporting Protective Garments (AREA)
  • Outer Garments And Coats (AREA)

Abstract

一种3D充气石墨烯发热保暖服装,包括保暖服装正面(1)、保暖服装背面(2)和保暖服装发热源(3),保暖服装正面(1)和保暖服装背面(2)缝制组成保暖服装,保暖服装包括衣身和衣袖,保暖服装正面(1)的衣身上安装有保暖服装发热源(3),保暖服装正面(1)和保暖服装背面(2)均采用双层设置;本结构合理简单、使用方便,利用石墨烯发热对空气及服装加热达到保暖的目的,将空气保暖与发热保暖有效结合,使得保暖服装抵御更低温度,且降低发热片对人员穿着造成的不适,便于保暖服装上发热片的精准定位安装,安装、拆卸方便,实用性更强。

Description

一种3D充气石墨烯发热保暖服装 技术领域:
本发明涉及保暖服装技术领域,特别涉及一种3D充气石墨烯发热保暖服装。
背景技术:
在冬季寒冷季节,通常采用穿着羽绒服、棉服等保暖服装进行抵御低温环境,但羽绒服、棉服等保暖服装只能在低温季节穿着,造成保暖服装穿着期限较短,以及保暖服装对人员手部的保暖效果较差,需要人员佩戴手套或携带暖手宝等,造成外出不便,实用性不强。
发明内容:
本发明的目的就在于为了解决上述问题而提供一种3D充气石墨烯发热保暖服装,解决了现有的羽绒服、棉服等保暖服装只能在低温季节穿着,造成保暖服装穿着期限较短,以及保暖服装对人员手部的保暖效果较差,需要人员佩戴手套或携带暖手宝等,造成外出不便,实用性不强的问题。
为了解决上述问题,本发明提供了一种技术方案:
一种3D充气石墨烯发热保暖服装,包括保暖服装正面、保暖服装背面和保暖服装发热源,所述保暖服装正面和保暖服装背面缝制组成保暖服装,保暖服装包括衣身和衣袖,所述保暖服装正面的衣身上安装有保暖服装发热源,所述保暖服装正面和保暖服装背面均采用双层设置,所述保暖服装正面和保暖服装背面包括保暖服内层面料、保暖服外层面料、第一热塑性聚氨酯膜层、第二热塑性聚氨酯膜层、热熔胶点、气流通道、粘结层、隔热保温层、保暖服装面层、导热纤维层和保暖服装里层,所述保暖服内层面料靠近保暖服外层面料的一侧粘接有第一热塑性聚氨酯膜层,所述保暖服外层面料靠近保暖服内层面料的一侧粘接有第二热塑性聚氨酯膜层,所述第一热塑性聚氨酯膜层和第二热塑性聚氨酯膜层上粘接有热熔胶点,所述第一热塑性聚氨酯膜层和第二热塑性聚氨酯膜层之间通过热熔胶点3D压合形成气流通道,所述气流通道呈正六边形设置,所述保暖服外层面料远离第一热塑性聚氨酯膜层的一侧通过粘结层粘接有隔热保温层,所述隔热保温层的一侧粘接有保暖服装面层,所述保暖服内层面料远离第二热塑性聚氨酯膜层的一侧粘接有导热纤维层,所述导热纤维层的一侧粘接有保暖服装里层。
作为本发明的一种优选技术方案,所述保暖服装发热源包括外侧口袋、内侧口袋、发热片插袋、石墨烯发热片、魔术贴、连接线、导线、连接插头和拉链结构,外侧口袋设置在衣身的保暖服装正面上,外侧口袋由口袋外层和口袋内层组成,所述口袋内层与衣身的保暖服装正面一体设置,所述口袋外层缝制在衣身的保暖服装正面上,外侧口袋的口袋内层上开设有内侧口袋,所述内侧口袋上缝制有发热片插袋,所述发热片插袋设置有两个,两个所述发热片插袋的内部安装有石墨烯发热片,所述石墨烯发热片设置有两个,两个所述石墨烯发热片之间通过连接线电连接,所述连接线通过连接插头与导线电连接,两个所述发热片插袋的袋口处安装有魔术贴,所述内侧口袋袋口处的口袋内层上安装有拉链结构,拉链结构由限位码、拉链连牙和拉链拉头组成,所述内侧口袋的两端设置有限位码,所述限位码之间的内侧口袋上设置有拉链连牙,所述拉链连牙上咬合安装拉链拉头。
作为本发明的一种优选技术方案,所述保暖服装正面和保暖服装背面上缝制有腰带环扣,腰带环扣设置有多个,腰带环扣上穿入有腰带,所述保暖服装正面的内侧安装有蓄电池板,所述蓄电池板通过导线与石墨烯发热片的连接线电性连接,所述蓄电池板设置在保暖服装正面的底部,且所述蓄电池板上设置有充电端口,衣身上设置有气嘴结构,气嘴结构包括开设在保暖服装正面上的注气口和安装在注气口上的密封塞,所述注气口呈圆形设置,所述密封塞与注气口之间可拆卸密封安装,所述注气口的一侧与保暖服装正面和保暖服装背面上的气流通道连通。
作为本发明的一种优选技术方案,所述魔术贴包括设置在发热片插袋一侧上的钩面层和设置在发热片插袋另一侧上的绒面层,绒面层与钩面层之间对应设置。
作为本发明的一种优选技术方案,所述石墨烯发热片呈正六边形结构设置。
作为本发明的一种优选技术方案,所述口袋外层和口袋内层组成的外侧口袋与袖口位置相对应设置。
作为本发明的一种优选技术方案,所述粘结层采用聚氨酯胶水材料制成。
作为本发明的一种优选技术方案,所述蓄电池板的输出电压为5V。
本发明的有益效果:
本发明结构合理简单、使用方便,与传统的保暖服装相比较,本3D充气石墨烯发热保暖服装,在服装的气流通道内注有空气,利用石墨烯发热对空气及服装加热达到保暖的目的,将空气保暖与发热保暖有效结合,使得保暖服装抵御更低温度,适用更寒冷的恶劣气候,又能在春、秋穿着,增加保暖服装穿着期限,将发热片安装在服装的口袋内侧,在增加服装保暖功能的同时,使得服装具有暖手的功能,且降低发热片对人员穿着造成的不适,以及发热片与发热片插袋、魔术贴配合,便于保暖服装上发热片的精准定位安装,安装、拆卸方便,实用性更强。
附图说明:
为了易于说明,本发明由下述的具体实施及附图作以详细描述。
图1为本发明的结构示意图;
图2为本发明的保暖服装正面和保暖服装背面结构示意图;
图3为本发明的气流通道结构示意图;
图4为本发明的保暖服装发热源结构示意图。
图中:1、保暖服装正面;2、保暖服装背面;21、保暖服内层面料;22、保暖服外层面料;23、第一热塑性聚氨酯膜层;24、第二热塑性聚氨酯膜层;25、热熔胶点;26、气流通道;27、粘结层;28、隔热保温层;29、保暖服装面层;210、导热纤维层;211、保暖服装里层;3、保暖服装发热源;31、口袋外层;32、口袋内层;33、内侧口袋;34、发热片插袋;35、石墨烯发热片;36、魔术贴;37、连接线;38、导线;39、连接插头;310、限位码;311、拉链连牙;312、拉链拉头;4、腰带;5、蓄电池板;6、注气口;7、密封塞。
具体实施方式:
如图1-4所示,本具体实施方式采用以下技术方案:一种3D充气石墨烯发热保暖服装,包括保暖服装正面1、保暖服装背面2和保暖服装发热源3,所述保暖服装正面1和保暖服装背面2缝制组成保暖服装,保暖服装包括衣身和衣袖,所述保暖服装正面1的衣身上安装有保暖服装发热源3,所述保暖服装正面1和保暖服装背面2均采用双层设置,所述保暖服装正面1和保暖服装背面2包括保暖服内层面料21、保暖服外层面料22、第一热塑性聚氨酯膜层23、第二热塑性聚氨酯膜层24、热熔胶点25、气流通道26、粘结层27、隔热保温层28、保暖 服装面层29、导热纤维层210和保暖服装里层211,所述保暖服内层面料21靠近保暖服外层面料22的一侧粘接有第一热塑性聚氨酯膜层23,所述保暖服外层面料22靠近保暖服内层面料21的一侧粘接有第二热塑性聚氨酯膜层24,所述第一热塑性聚氨酯膜层23和第二热塑性聚氨酯膜层24上粘接有热熔胶点25,所述第一热塑性聚氨酯膜层23和第二热塑性聚氨酯膜层24之间通过热熔胶点253D压合形成气流通道26,所述气流通道26呈正六边形设置,所述保暖服外层面料22远离第一热塑性聚氨酯膜层23的一侧通过粘结层27粘接有隔热保温层28,所述隔热保温层28的一侧粘接有保暖服装面层29,所述保暖服内层面料21远离第二热塑性聚氨酯膜层24的一侧粘接有导热纤维层210,所述导热纤维层210的一侧粘接有保暖服装里层211。
其中,所述保暖服装发热源3包括外侧口袋、内侧口袋33、发热片插袋34、石墨烯发热片35、魔术贴36、连接线37、导线38、连接插头39和拉链结构,外侧口袋设置在衣身的保暖服装正面1上,外侧口袋由口袋外层31和口袋内层32组成,所述口袋内层32与衣身的保暖服装正面1一体设置,所述口袋外层31缝制在衣身的保暖服装正面1上,外侧口袋的口袋内层32上开设有内侧口袋33,所述内侧口袋33上缝制有发热片插袋34,所述发热片插袋34设置有两个,两个所述发热片插袋34的内部安装有石墨烯发热片35,所述石墨烯发热片35设置有两个,两个所述石墨烯发热片35之间通过连接线37电连接,所述连接线37通过连接插头39与导线38电连接,两个所述发热片插袋34的袋口处安装有魔术贴36,所述内侧口袋33袋口处的口袋内层32上安装有拉链结构,拉链结构由限位码310、拉链连牙311和拉链拉头312组成,所述内侧口袋33的两端设置有限位码310,所述限位码310之间的内侧口袋33上设置有拉链连牙311,所述拉链连牙311上咬合安装拉链拉头312,所述保暖服装正面1和保暖服装背面2上缝制有腰带环扣,腰带环扣设置有多个,腰带环扣上穿入有腰带4,所述保暖服装正面1的内侧安装有蓄电池板5,所述蓄电池板5通过导线38与石墨烯发热片35的连接线37电性连接,所述蓄电池板5设置在保暖服装正面1的底部,且所述蓄电池板5上设置有充电端口,衣身上设置有气嘴结构,气嘴结构包括开设在保暖服装正面1上的注气口6和安装在注气口6上的密封塞7,所述注气口6呈圆形设置,所述密封塞7与注气口6之间可拆卸密封安装,所述注气口 6的一侧与保暖服装正面1和保暖服装背面2上的气流通道26连通,所述魔术贴36包括设置在发热片插袋34一侧上的钩面层和设置在发热片插袋34另一侧上的绒面层,绒面层与钩面层之间对应设置,石墨烯发热片35呈正六边形结构设置,保证气流通道26空间的稳定,提高气流通道26密封性,所述口袋外层31和口袋内层32组成的外侧口袋与袖口位置相对应设置,所述粘结层27采用聚氨酯胶水材料制成,粘接牢固,稳定性好,所述蓄电池板5的输出电压为5V,稳定且加热温度适中。
本发明的使用状态为:使用时,利用3D压合热熔胶点25使得保暖服外层面料22和保暖服内层面料21之间通过热熔胶点25压痕形成正六边形的气流通道26,由注气口6向保暖服装正面1和保暖服装背面2内部的气流通道26中注入空气,将石墨烯发热片35插入在发热片插袋34中,并将石墨烯发热片35通过连接线37以及导线38与保暖服装上的蓄电池板5连接,通过魔术贴36将发热片插袋34粘合,从而对发热片插袋34内的石墨烯发热片35固定,通电后的石墨烯发热片35产生热量对气流通道26内口气加热,利用空气的流通性能,使得加热空气扩散对保暖服装正面1和保暖服装背面2加热,当不需要石墨烯发热片35加热时,将石墨烯发热片35由外侧口袋的发热片插袋34中取出,降低穿衣时对发热片的损耗,本发明结构合理简单、使用方便,与传统的保暖服装相比较,本3D充气石墨烯发热保暖服装,在服装的气流通道26内注有空气,利用石墨烯发热对空气及服装加热达到保暖的目的,将空气保暖与发热保暖有效结合,使得保暖服装抵御更低温度,适用更寒冷的恶劣气候,又能在春、秋穿着,增加保暖服装穿着期限,将发热片安装在服装的口袋内侧,在增加服装保暖功能的同时,使得服装具有暖手的功能,且降低发热片对人员穿着造成的不适,以及发热片与发热片插袋34、魔术贴36配合,便于保暖服装上发热片的精准定位安装,安装、拆卸方便,实用性更强。
以上显示和描述了本发明的基本原理和主要特征和本发明的优点,本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内,本发明要求保护范围由所附的权利要求书及其等效物界定。

Claims (8)

  1. 一种3D充气石墨烯发热保暖服装,包括保暖服装正面(1)、保暖服装背面(2)和保暖服装发热源(3),其特征在于:所述保暖服装正面(1)和保暖服装背面(2)缝制组成保暖服装,保暖服装包括衣身和衣袖,所述保暖服装正面(1)的衣身上安装有保暖服装发热源(3),所述保暖服装正面(1)和保暖服装背面(2)均采用双层设置,所述保暖服装正面(1)和保暖服装背面(2)包括保暖服内层面料(21)、保暖服外层面料(22)、第一热塑性聚氨酯膜层(23)、第二热塑性聚氨酯膜层(24)、热熔胶点(25)、气流通道(26)、粘结层(27)、隔热保温层(28)、保暖服装面层(29)、导热纤维层(210)和保暖服装里层(211),所述保暖服内层面料(21)靠近保暖服外层面料(22)的一侧粘接有第一热塑性聚氨酯膜层(23),所述保暖服外层面料(22)靠近保暖服内层面料(21)的一侧粘接有第二热塑性聚氨酯膜层(24),所述第一热塑性聚氨酯膜层(23)和第二热塑性聚氨酯膜层(24)上粘接有热熔胶点(25),所述第一热塑性聚氨酯膜层(23)和第二热塑性聚氨酯膜层(24)之间通过热熔胶点(25)3D压合形成气流通道(26),所述气流通道(26)呈正六边形设置,所述保暖服外层面料(22)远离第一热塑性聚氨酯膜层(23)的一侧通过粘结层(27)粘接有隔热保温层(28),所述隔热保温层(28)的一侧粘接有保暖服装面层(29),所述保暖服内层面料(21)远离第二热塑性聚氨酯膜层(24)的一侧粘接有导热纤维层(210),所述导热纤维层(210)的一侧粘接有保暖服装里层(211)。
  2. 根据权利要求1所述的一种3D充气石墨烯发热保暖服装,其特征在于:所述保暖服装发热源(3)包括外侧口袋、内侧口袋(33)、发热片插袋(34)、石墨烯发热片(35)、魔术贴(36)、连接线(37)、导线(38)、连接插头(39)和拉链结构,外侧口袋设置在衣身的保暖服装正面(1)上,外侧口袋由口袋外层(31)和口袋内层(32)组成,所述口袋内层(32)与衣身的保暖服装正面(1)一体设置,所述口袋外层(31)缝制在衣身的保暖服装正面(1)上,外侧口袋的口袋内层(32)上开设有内侧口袋(33),所述内侧口袋(33)上缝制有发热片插袋(34),所述发热片插袋(34)设置有两个,两个所述发热片插袋(34)的内部安装有石墨烯发热片(35),所述石墨烯发热片(35)设置有两个,两个所述石墨烯发热片(35)之间通过连接线(37)电连接,所述连接线(37)通过 连接插头(39)与导线(38)电连接,两个所述发热片插袋(34)的袋口处安装有魔术贴(36),所述内侧口袋(33)袋口处的口袋内层(32)上安装有拉链结构,拉链结构由限位码(310)、拉链连牙(311)和拉链拉头(312)组成,所述内侧口袋(33)的两端设置有限位码(310),所述限位码(310)之间的内侧口袋(33)上设置有拉链连牙(311),所述拉链连牙(311)上咬合安装拉链拉头(312)。
  3. 根据权利要求1所述的一种3D充气石墨烯发热保暖服装,其特征在于:所述保暖服装正面(1)和保暖服装背面(2)上缝制有腰带环扣,腰带环扣设置有多个,腰带环扣上穿入有腰带(4),所述保暖服装正面(1)的内侧安装有蓄电池板(5),所述蓄电池板(5)通过导线(38)与石墨烯发热片(35)的连接线(37)电性连接,所述蓄电池板(5)设置在保暖服装正面(1)的底部,且所述蓄电池板(5)上设置有充电端口,衣身上设置有气嘴结构,气嘴结构包括开设在保暖服装正面(1)上的注气口(6)和安装在注气口(6)上的密封塞(7),所述注气口(6)呈圆形设置,所述密封塞(7)与注气口(6)之间可拆卸密封安装,所述注气口(6)的一侧与保暖服装正面(1)和保暖服装背面(2)上的气流通道(26)连通。
  4. 根据权利要求2所述的一种3D充气石墨烯发热保暖服装,其特征在于:所述魔术贴(36)包括设置在发热片插袋(34)一侧上的钩面层和设置在发热片插袋(34)另一侧上的绒面层,绒面层与钩面层之间对应设置。
  5. 根据权利要求2所述的一种3D充气石墨烯发热保暖服装,其特征在于:所述石墨烯发热片(35)呈正六边形结构设置。
  6. 根据权利要求2所述的一种3D充气石墨烯发热保暖服装,其特征在于:所述口袋外层(31)和口袋内层(32)组成的外侧口袋与袖口位置相对应设置。
  7. 根据权利要求1所述的一种3D充气石墨烯发热保暖服装,其特征在于:所述粘结层(27)采用聚氨酯胶水材料制成。
  8. 根据权利要求3所述的一种3D充气石墨烯发热保暖服装,其特征在于:所述蓄电池板(5)的输出电压为5V。
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