Sports vest with heating function
Technical Field
The utility model relates to the technical field of intelligent heating clothes, in particular to a sports waistcoat with a heating function.
Background
The intelligent heating clothes are the most prominent products developed and sold nowadays. The electric heating garment is a garment capable of actively heating and actively supplying heat, and the principle of the electric heating garment is that a power supply, a temperature control device, a safety protection device, a heating element and the like are connected through a lead to form a circuit, and the power supply is used for controlling an electric heating element in the garment to generate heat. The intelligent heating is an important component in the field of intelligent wearing, and has great market potential. Particularly, under the influence of the flow of winter and Australian, the traditional garment industry increases the investment on intelligent electric heating clothes, and the intelligent electric heating clothes are more and more concerned.
The heating element is the key of the intelligent heating clothes, and the flexibility, comfort, safety, stability, water washing resistance and high electric heating conversion efficiency are the targets pursued in the design of the heating element of the intelligent heating clothes. The mainstream intelligent heating clothes heating element in the market at present comprises a graphene film, a carbon-based slurry film, carbon fibers, a carbon nanotube film, a metal heating wire, silver-plated lycra yarns and the like. The materials generally have the problems of poor water resistance and safety stability, and the product yield is low. In addition, in the manufacturing process of the intelligent heating clothes, the heating material cannot be compatible with the existing clothes fabric, the heating element is required to be prepared into the heating piece with a certain thickness firstly, and then the heating piece is sewn inside the clothes, so that the wearing comfort of consumers is greatly influenced, and the manufacturing difficulty of the clothes ready-made clothes is increased. The metal heating wire and the silver-plated lycra yarn can be compatible with clothing fabric, but the metal heating material has the problem of low electrothermal conversion efficiency, the metal heating wire is hard in texture and poor in wearing comfort, and after the silver-plated lycra yarn is repeatedly used and rubbed, the conductive coating on the surface of the fabric is easy to fall off, so that the electrothermal performance is influenced.
SUMMERY OF THE UTILITY MODEL
The present invention has been made to solve the above-mentioned problems occurring in the prior art, and an object of the present invention is to provide a sports vest having a heating function.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a motion vest with function of generating heat, includes the clothing body of integrated into one piece, connects the connecting band of clothing body lateral part, the clothing body comprises nexine, the layer of generating heat and skin, the zone of heating is carbon nanotube fiber cloth, and carbon nanotube fiber cloth adopts warp and woof to weave and forms, and the warp is the cotton thread of mutual spaced, and the woof includes cotton thread and carbon nanotube yarn, and the cotton thread and the crisscross interval setting each other of carbon nanotube yarn of woof, the carbon nanotube yarn is generated heat by the battery power supply.
The solar energy controller is arranged on the back of the clothes body, a solar panel and a switch are arranged on the surface of the solar controller, a temperature sensor and a storage battery are arranged in the solar controller, the temperature sensor, the switch, the storage battery and the solar panel are all electrically connected with the controller, the temperature sensor is used for monitoring the temperature of the clothes body, and the switch is used for controlling the on-off of a circuit between the storage battery and the carbon nanotube yarn.
The further scheme is that one end of the carbon nanotube yarn is electrically connected with one another through a first wire, the other end of the carbon nanotube yarn is electrically connected with one end of the storage battery through a second wire, the first wire is electrically connected with one end of the storage battery through a first wire connector, and the second wire is electrically connected with the other end of the storage battery through a second wire connector.
The inner layer is made of flannel, and the outer layer is made of terylene cloth.
The connecting belt is an elastic belt with elasticity.
The solar cell panel adopts a flexible polycrystalline silicon solar cell panel or an amorphous silicon thin-film solar cell panel.
In a further aspect, the carbon nanotube yarn is made by twisting a plurality of carbon nanotube fibers.
Compared with the prior art, the utility model has the beneficial effects that: the sports waistcoat with the heating function is made of three layers of light and thin cloth, namely an inner layer, a heating layer and an outer layer, the heating layer is made of weft yarns, and one carbon nanotube yarn is woven into the heating layer at intervals of 1cm to achieve the functions of light, thin, flexibility, wear resistance, washing resistance and heating, and compared with the traditional heating piece for local heating, the whole sports waistcoat with the heating function is uniformly heated, so that the comfort of the sports waistcoat in the wearing process is improved; the temperature sensor monitors the temperature of the clothes body in real time, when the temperature exceeds the set upper limit temperature, the carbon nanotube yarn is controlled to stop heating, and when the temperature is lower than the set lower limit temperature, the carbon nanotube yarn starts to heat again, so that the temperature of the clothes body is kept in an adaptive temperature range; the solar cell panel converts light energy into electric energy for generating electricity and supplying heat to the carbon nano tube yarns, and the solar cell panel is energy-saving and environment-friendly.
Drawings
FIG. 1 is a front view of the garment body of the present invention;
FIG. 2 is a rear view of the garment body of the present invention;
FIG. 3 is a schematic cross-sectional view of the garment of the present invention;
FIG. 4 is a schematic view of the structure of the heat generating layer of the present invention;
reference numerals: the solar energy thermal insulation garment comprises a garment body 1, a solar cell panel 2, a solar controller board 3, a first lead connector 1a, a second lead connector 1b, a connecting belt 4, a controller, a temperature sensor, a storage battery, a first lead 2a, a second lead 2b, cotton threads 5, carbon nano tube yarns 6, an inner layer 7, a heating layer 8, an outer layer 9 and a switch 10.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings 1 to 4.
The utility model provides a motion vest with function of generating heat, includes integrated into one piece's the clothing body 1, connects the connecting band 4 of the 1 lateral part of the clothing body, the clothing body 1 comprises nexine 7, layer 8 and outer 9 that generate heat, zone of heating 8 is carbon nanotube fiber cloth, and carbon nanotube fiber cloth adopts warp and woof to weave and forms, and the warp is cotton 5 of mutual spaced, and the woof includes cotton 5 and carbon nanotube yarn 6, and the cotton 5 of woof and the setting of the 6 crisscross interval 1cm of carbon nanotube yarn each other, carbon nanotube yarn 6 is heated by the battery power supply. After wearing the sports vest, compare traditional electric heat piece heating, layer 8 that generates heat can realize whole even heating, has improved the travelling comfort of sports vest wearing process.
In this embodiment, a solar controller board 3 is arranged on the back surface of the garment body 1, a solar panel 2 and a switch 10 are arranged on the surface of the solar controller board 3, a controller, a temperature sensor and the storage battery are arranged in the solar controller board 3, the temperature sensor, the switch 10, the storage battery and the solar panel 2 are all electrically connected with the controller, the temperature sensor is used for monitoring the temperature of the garment body 1, and the switch 10 is used for controlling the on-off of a circuit between the storage battery and the carbon nanotube yarn 6.
In this embodiment, one end of the carbon nanotube yarn 6 is electrically connected to each other through the first wire 2a, the other end of the carbon nanotube yarn 6 is electrically connected to each other through the second wire 2b, the first wire 2a is electrically connected to one end of the battery through the first wire connector 1a, and the second wire 2b is electrically connected to the other end of the battery through the second wire connector 1b, so that the battery and the carbon nanotube yarn 6 form a circulation circuit.
In this embodiment, the inner layer 7 is made of flannel and the outer layer 9 is made of terylene cloth.
In this embodiment, the connecting band 4 is provided as an elastic band having elasticity.
In this embodiment, the solar cell panel 2 is a flexible polycrystalline silicon solar cell panel or an amorphous silicon thin film solar cell panel.
In this embodiment, the carbon nanotube yarn 6 is obtained by twisting 10 carbon nanotube fibers S having a diameter of 45 μm in the direction, and the twist is 800 twists/m.
The working principle of the utility model is as follows: firstly, the solar cell panel 2 absorbs sunlight to charge a storage battery, after a switch 10 on the solar controller panel 3 is turned on, the storage battery supplies power to the carbon nanotube yarn 6 of the clothes body 1 through a first lead 2a and a second lead 2b, the carbon nanotube yarn 6 starts to generate heat after being powered on, a temperature sensor on the solar controller panel 3 monitors the temperature of the clothes body 1, when the temperature exceeds a set upper limit of 40 ℃, a signal is transmitted to a controller, the controller cuts off a circuit through the switch 10, the carbon nanotube yarn 6 stops generating heat, when the temperature sensor detects that the temperature on the clothes body 1 is lower than 20 ℃, the controller closes the switch 10 again, and the carbon nanotube yarn 6 starts to generate heat again.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.