An intelligent temperature-controlled thermal underwear
A technology of thermal underwear and intelligent temperature control, applied in the field of thermal clothing, can solve problems such as high voltage, uneven heating, inconvenience, etc., and achieve the effects of increasing service life, convenient and diverse use, and comfortable wearing
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2017-01-18
Smart Images

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Abstract
Description
technical field
[0001] The invention relates to a thermal clothing heated by direct current, in particular to a controlled electric heating thermal clothing using a graphene heating film as a heating element. Background technique
[0002] For the sake of health care or keeping warm, people often need to apply hot compresses to appropriate parts of the body surface. The heat source can be a heat-storing hot water bag, or a heat patch that uses chemical reactions to generate heat. In recent years, thermal underwear made by combining batteries and various types of electric heating films has appeared. For example: Chinese patent CN201020511754 has designed a kind of low-voltage electric heating thermal underwear. The thermal underwear designed includes clothing, conductive wire, temperature probe and interconnected lithium-ion battery and main control chip. It is heated by a portable low-voltage DC power supply and can be repeated It can be recharged and used for many times, an...
Examples
Embodiment 1
[0065] Such as figure 1 As shown, the thermal vest of an embodiment introduces such as figure 2 For the low-voltage transparent electric heating film 6 of the structure shown, a piece of the above-mentioned low-voltage transparent electric heating film 6 is arranged on the vest and the spine, lumbar spine, and abdomen of the body; the battery 7 that provides heating energy and the working energy of the control module passes through the contacts Or the connection wire is electrically connected with the control module 8, the battery 7 and the control module 8 can be integrated into a box, and all the low-voltage transparent electric heating films are connected to the control power output interface of the control module 8 by lead wires in parallel; A thin-film thermistor 9 is pasted on a piece of low-voltage transparent electrothermal film to monitor the real-time temperature of the low-voltage transparent electrothermal film.
[0066] An operation button and a working indicato...
Embodiment 2
[0071] This embodiment is basically the same as Embodiment 1, except that the internal electrodes and the bus bars are made of different materials. The transparent conductive material can be used as the inner electrode, and the metal material can be used as the bus bar; or different metal materials can be used as the inner electrode and the bus bar respectively; or the transparent conductive material can be used as the bus bar, and the metal material can be used as the inner electrode. In this embodiment, metal copper foil or silver paste is preferably used as the material of the bus bar, and graphene with at least 5 layers is used as the material of the internal electrodes. In this embodiment, it is more preferable to use metal platinum as the material of the bus bar and 10-layer graphene as the material of the internal electrodes. Single-layer graphene is used as the material of the transparent conductive layer (square resistance is 250Ω / □). The graphene internal electrode ...
Embodiment 3
[0075] This embodiment is basically the same as Embodiment 1, the difference lies in the specific design of the electrodes.
[0076] In order to ensure that the internal electrodes are arranged at different positions of the bus bar, the difference between the highest voltage and the lowest voltage does not exceed 10%. During the production of this embodiment, the number of intervals n generated by the internal electrodes, the longest length l of the internal electrodes, and the width W of the bus bar 1. The thickness H of the bus bar is measured and processed accurately, so that it conforms to the above formula (2).
[0077] This embodiment requires that the electrodes be arranged as follows: the length of the inner electrode is 108 mm, 15 intervals are generated in total, the width of the bus bar is 8 mm, and the thickness is 25 μm. After testing, the difference between the highest voltage and the lowest voltage at different positions of the bus bar is 0.2%.
[0078] Connect...