CN204271727U - A kind of Intelligent garment - Google Patents
A kind of Intelligent garment Download PDFInfo
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- CN204271727U CN204271727U CN201420802422.6U CN201420802422U CN204271727U CN 204271727 U CN204271727 U CN 204271727U CN 201420802422 U CN201420802422 U CN 201420802422U CN 204271727 U CN204271727 U CN 204271727U
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Abstract
The utility model discloses a kind of Intelligent garment, comprise waterproof clothing body, flexible power generation device and energy storage device; Described flexible power generation device embeds garment body, and be connected with energy storage device, energy storage device is positioned at inside garment body back.Flexible power generation device and energy storage device are combined on waterproof clothing by the utility model, and the energy that Collection utilization nature and human body produce is that personal electric product charges, respond well.
Description
Technical field
The utility model belongs to intelligent clothing field, more specifically, relates to a kind of Intelligent garment.
Background technology
In recent years along with the development of science and technology and improving constantly of living standards of the people, the use of personal electric product is more and more universal.At present, nearly all personal electric product is all use storage battery to power, and charges when electricity is finished using time with external power supply again.But, when people is in the place cannot finding external power supply in time, once battery is finished, then very inconvenient.
Nature and people know from experience the various forms of energy of generation, and traditional clothes only possesses function that is warming and decoration, cannot these energy of Collection utilization be but that personal electric product charges.
Utility model content
For above defect or the Improvement requirement of prior art, the utility model provides a kind of Intelligent garment, flexible power generation device and energy storage device is its object is to be combined on waterproof clothing, the energy that Collection utilization nature and human body produce is that personal electric product charges, and solving ordinary coat thus cannot carry out the technical problem of charging for personal electric product.
For achieving the above object, according to an aspect of the present utility model, provide a kind of Intelligent garment, comprise waterproof clothing body, flexible power generation device and energy storage device; Described flexible power generation device embeds garment body, and be connected with energy storage device, energy storage device is positioned at inside garment body back.
Preferably, described Intelligent garment, energy storage device described in it is double electric layer capacitor or small-scale lithium ion cell.
Preferably, described Intelligent garment, flexible power generation device described in it is flexible raindrop generator, flexible electret generator and/or flexible solar battery, described flexible raindrop generator is positioned at garment body back, described flexible electret generator is positioned at garment body elbow joint and/or shoulder joint place, and described flexible solar battery is positioned at garment body shoulder.
Preferably, described Intelligent garment, when flexible power generation device described in it be flexible raindrop generator and/or flexible electret generator time, also should comprise rectifier.
Preferably, described Intelligent garment, described in it, flexible raindrop generator comprises electret layer and conductive layer from top to bottom, and described conductive layer and described electret laminating close.
Preferably, described Intelligent garment, described in it, flexible electret generator comprises the first assembly and the second assembly, described first assembly and the bonding of the second assembly; Wherein, described first assembly comprises the first electrode, the first conductive layer and electret layer from top to bottom, and described first electrode fits in described first conductive layer edge, and described first conductive layer and described electret laminating close; Described second assembly comprises the second electrode, the second conductive layer and flexible substrates from top to bottom, and described second electrode fits in described second conductive layer edge, and described second conductive layer and described flexible substrates are fitted.
In general, the above technical scheme conceived by the utility model compared with prior art, can obtain following beneficial effect:
(1) the utility model Collection utilization natural energy and human body mechanical energy are electronic product charging, easy to use and without any environmental pollution.
(2) material that the utility model is used is simple and easy to get, with low cost, and manufacturing process is simple, just with production.
Accompanying drawing explanation
Fig. 1 is overall structure schematic diagram of the present utility model;
Fig. 2 is the structural representation of the flexible raindrop generator in the utility model;
Fig. 3 is the structural representation of the flexible electret generator in the utility model;
Fig. 4 is the generation current effect schematic diagram of the flexible raindrop generator in the utility model;
Fig. 5 is the generation current effect schematic diagram of flexible electret generator of the present utility model.
In all of the figs, identical Reference numeral is used for representing identical element or structure, wherein: 1 is garment body, 2 is flexible raindrop generator, 21 is flexible raindrop generator electret layer, 22 is flexible raindrop generator conductive layer, 3 is flexible electret generator, 31 is flexible electret generator first assembly, 311 is the first conductive layer, 312 is electret layer, 313 is the first electrode, 32 is flexible electret generator second assembly, 321 is flexible substrates, 322 is the second conductive layer, 323 is the second electrode, 4 is flexible solar battery, 5 is rectifier, 6 is energy storage device.
Embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.In addition, if below in described each execution mode of the utility model involved technical characteristic do not form conflict each other and just can mutually combine.
The Intelligent garment that the utility model provides comprises waterproof clothing body 1, flexible power generation device and energy storage device 6; Flexible power generation device embeds garment body 1, and be connected with energy storage device 6, energy storage device 6 is double electric layer capacitor or small-scale lithium ion cell, and energy storage device 6 is positioned at inside garment body 1 back.
Described flexible power generation device is flexible raindrop generator 2, flexible electret generator 3 and/or flexible solar battery 4, flexible raindrop generator 2 is positioned at garment body 1 back, flexible electret generator 3 is positioned at garment body elbow joint and/or shoulder joint, and flexible solar battery 4 is positioned at garment body 1 shoulder.Described flexible raindrop generator 2 is for being electric energy by the kinetic transformation of rainy generation, and described flexible electret generator 3 is electric energy for the kinetic transformation produced by human body, and described flexible solar battery 4 is for converting solar energy into electrical energy.
When described flexible power generation device be flexible raindrop generator 2 and/or flexible electret generator 3 time, also should comprise rectifier 5.
Described flexible raindrop generator 2, as shown in Figure 2, comprises electret layer 21 and conductive layer 22 from top to bottom, and conductive layer 22 and electret layer 21 are fitted.The material of electret layer 21 is selected from the conventional electret such as polytetrafluoroethylene, polyethylene, polypropylene, polyvinylidene fluoride, poly-ethylene-propylene copolymers, polytrifluorochloroethylene, ethylene tetrafluoroethylene copolymer, vinylidene trifluoro-ethylene copolymer, polyimides, polyethylene terephthalate and/or PEN.The material of conductive layer 22 is selected from the conventional electric conducting materials such as gold, silver, copper, aluminium or carbon.
Described flexible electret generator 3, as shown in Figure 3, comprises the first assembly 31 and the second assembly 32, first assembly 31 and the second assembly 32 and bonds; Wherein, the first assembly 31 comprises the first electrode 313, first conductive layer 311 from top to bottom and electret layer 312, first electrode 313 fits in the first conductive layer 311 edge, and the first conductive layer 311 closes with electret 312 laminating; Second assembly 32 comprises the second electrode 323, second conductive layer 322 from top to bottom and flexible substrates 321, second electrode 323 fits in the second conductive layer 322 edge, and the second conductive layer 322 is fitted with flexible substrates 321.The material of electret material layer 312 is selected from the conventional electret such as polytetrafluoroethylene, polyethylene, polypropylene, polyvinylidene fluoride, poly-ethylene-propylene copolymers, polytrifluorochloroethylene, ethylene tetrafluoroethylene copolymer, vinylidene trifluoro-ethylene copolymer, polyimides, polyethylene terephthalate and/or PEN.The material of the first conductive layer 311, second conductive layer 322 is selected from the common conductor material such as gold, silver, copper, aluminium or carbon.The material of flexible substrates 321 is selected from the conventional flexible base materials such as polyethylene, polypropylene, polyimides and/or polyethylene terephthalate.
Flexible solar battery 4 output current should at 10 milliamperes every square centimeter.
Embodiment 1
A kind of Intelligent garment, as shown in Figure 1, comprises waterproof clothing body 1, flexible raindrop generator 2, flexible electret generator 3, flexible solar battery 4, rectifier 5 and compact lithium cell 6.Flexible raindrop generator 2 is positioned at garment body 1 back, is connected with rectifier 5; Rectifier 5 is positioned at inside garment body 1 back; Flexible electret generator 3 is positioned at garment body 1 elbow joint place, is connected with rectifier 5; Flexible solar battery 4 is positioned at garment body 1 shoulder, is connected with compact lithium cell 6; Compact lithium cell 6 is positioned at inside garment body 1 back.
Described flexible raindrop generator 2, as shown in Figure 2, comprises electret layer 21 and conductive layer 22 from top to bottom, and conductive layer 22 and electret layer 21 are fitted.The material of electret layer 21 is polytetrafluoroethylene, and the material of conductive layer 22 is aluminium.The generation current of flexible raindrop generator 2 as shown in Figure 4, often drips raindrop and drips to the electric current that this kind of raindrop generator can produce about 10 microamperes.
Described flexible electret generator 3, as shown in Figure 3, comprises the first assembly 31 and the second assembly 32, first assembly 31 and second group 32 bondings; Wherein, the first assembly 31 comprises the first electrode 313, first conductive layer 311 from top to bottom and electret layer 312, first electrode 313 fits in described first conductive layer 311 edge, and the first conductive layer 311 is fitted with electret layer 312; Second assembly 32 comprises the second electrode 323, second conductive layer 322 from top to bottom and flexible substrates 321, second electrode 323 fits in the second conductive layer 322 edge, and the second conductive layer 322 is fitted with flexible substrates 321.Electret layer 312 is polytetrafluoroethylene, and first, second conductive is aluminium, and flexible substrates 321 material layer is poly-dimethyl carbonate.The generation current of flexible electret generator 3 as shown in Figure 5.
Flexible solar battery 4 output current should be 10 milliamperes every square centimeter.
The electric energy that various generator produces all is stored in compact lithium cell 6, the capacity of this kind of small-scale lithium ion cell 6 is 100mA/h, flexible raindrop generator 2 can be full of through the continuous operation of 20 to 50 hours, flexible electret generator 3 can be full of through the continuous operation of 5 to 10 hours, and flexible solar battery 4 can be full of through the continuous operation of 1 hours.Lithium ion battery 6 after being full of charges in order to give personal electric product.
Those skilled in the art will readily understand; the foregoing is only preferred embodiment of the present utility model; not in order to limit the utility model; all do within spirit of the present utility model and principle any amendment, equivalent to replace and improvement etc., all should be included within protection range of the present utility model.
Claims (6)
1. an Intelligent garment, is characterized in that, comprises waterproof clothing body (1), flexible power generation device and energy storage device (6); Described flexible power generation device embeds garment body, and be connected with energy storage device (6), energy storage device (6) is positioned at inside garment body back.
2. Intelligent garment as claimed in claim 1, it is characterized in that, described energy storage device (6) is double electric layer capacitor or small-scale lithium ion cell.
3. Intelligent garment as claimed in claim 1, it is characterized in that, described flexible power generation device is flexible raindrop generator (2), flexible electret generator (3) and/or flexible solar battery (4), described flexible raindrop generator (2) is positioned at garment body back, described flexible electret generator (3) is positioned at garment body elbow joint and/or shoulder joint place, and described flexible solar battery (4) is positioned at garment body shoulder.
4. Intelligent garment as claimed in claim 3, is characterized in that, when described flexible power generation device be flexible raindrop generator (2) and/or flexible electret generator (3) time, also should comprise rectifier (5).
5. Intelligent garment as claimed in claim 3, it is characterized in that, described flexible raindrop generator (2) comprises electret layer (21) and conductive layer (22) from top to bottom, and described conductive layer (22) and described electret layer (21) are fitted.
6. Intelligent garment as claimed in claim 3, it is characterized in that, described flexible electret generator (3) comprises the first assembly (31) and the second assembly (32), described first assembly (31) and the second assembly (32) bonding; Wherein, described first assembly (31) comprises the first electrode (313), the first conductive layer (311) and electret layer (312) from top to bottom, described first electrode (313) fits in described first conductive layer (311) edge, and described first conductive layer (311) and described electret layer (312) are fitted; Described second assembly (32) comprises the second electrode (323), the second conductive layer (322) and flexible substrates (321) from top to bottom, described second electrode (323) fits in described second conductive layer (322) edge, and described second conductive layer (322) and described flexible substrates (321) are fitted.
Priority Applications (1)
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CN201420802422.6U CN204271727U (en) | 2014-12-16 | 2014-12-16 | A kind of Intelligent garment |
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CN201420802422.6U CN204271727U (en) | 2014-12-16 | 2014-12-16 | A kind of Intelligent garment |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106901415A (en) * | 2017-05-08 | 2017-06-30 | 哈尔滨工业大学 | A kind of combined type movement self power generation overcoat |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106901415A (en) * | 2017-05-08 | 2017-06-30 | 哈尔滨工业大学 | A kind of combined type movement self power generation overcoat |
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