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Wire structures and smart clothing

A wire and mesh structure technology, applied in the field of smart wear, can solve the problems of wire breakage, user activity interference, and wire non-stretchability, etc., to avoid breakage, easy to stretch, and enhance stretchability.

Active Publication Date: 2018-04-03
ZHEJIANG HUAER TEXTILE TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, in the process of applying wires to smart clothing, it will be found that because smart clothing needs to collect physiological data from the human body, smart clothing needs to fit the human body more than traditional clothing, and it is often used with higher elasticity. fabric; however, the wire is not stretchable. When the fabric is stretched in the process of wearing smart clothing, the wire fixed to the fabric will be subject to greater tension. Not only is there a risk of wire breakage, but also Users of smart clothing will also feel the reaction force of the wires, which will interfere with the user's activities

Method used

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  • Wire structures and smart clothing
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  • Wire structures and smart clothing

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Experimental program
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Embodiment 1

[0031] figure 1 It is a schematic diagram of a wire structure provided in Embodiment 1 of the present invention. The wire structure can be arranged on a fabric, such as figure 1 As shown, a plurality of wires 11 intersect each other to form a mesh structure, and the mesh structure has a plurality of mesh holes 12 formed by intersecting wires 11, as figure 1 As shown, each mesh 12 is parallelogram-shaped.

[0032] For each mesh 12, the mesh 12 is surrounded by four sections of wires, and the opposite two sections of wires are parallel to each other, so that the mesh 12 presents a parallelogram, and the wires 11 cross each other The location is denoted as intersection point 13.

[0033] The embodiment of the present invention is mainly based on the situation that a wire with no or less elasticity is matched with a fabric with higher elasticity. When the fabric is stretched, the wire will not be subjected to a large pulling force, reducing the risk of wire breakage. Furthermor...

Embodiment 2

[0040] On the basis of the wire structure provided in Embodiment 1, although in the wire structure provided in Embodiment 1, the network structure formed by a plurality of wires 11 has improved the stretchability of the wire 11 through the braiding method of the wire 11. However, due to certain limitations in the stretchable direction of the network structure, for example: in the direction parallel to the direction of the wire, that is, the direction of the four sides of the parallelogram, it does not have stretchability. Therefore, when the network structure is set When it is placed on the fabric, try to match the stretchable direction of the mesh structure with the stretchable direction of the fabric, for example: the extension direction of multiple wires 11 can be different from the direction with the highest probability of fabric being stretched, so that the wires The extension direction of 11 avoids the frequent stretching direction of the fabric, and the wire 11 is protec...

Embodiment 3

[0048] On the basis of Embodiment 1 or Embodiment 2, in order to further reduce the tensile force on the wire 11 and reduce the possibility of wire 11 breaking when the fabric is stretched, some wrinkles can be set on the surface of the fabric. When stretching, the pleats extend along the stretched direction of the fabric to relieve the tension. Since the purpose of setting the pleats is to relieve the tension through their extension, when setting the pleats, it should be noted that the extension direction of the pleats should be the same as the direction in which the fabric is most likely to be stretched, so that the pleats have a higher probability of being stretched. Extend in the direction of stretching.

[0049] Figure 4 is one of the schematic diagrams of folds, such as Figure 4 The shown folds 30 line type, for a mesh 12 of the mesh structure, there may be multiple linear folds 30 in a parallelogram, and the four intersection points 13 of the parallelogram are fixed...

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PUM

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Abstract

The embodiment of the invention provides a lead structure and a piece of intelligent clothes. Multiple leads are arranged on a fabric serving a lead carrier and are mutually crossed to form a net structure. Due to the fact that net holes of the net structure are parallelograms, the net structure has instability, is very easy to stretch, the leads of the net structure can produce deformation matched with the stretched state of the fabric during stretching when the stretchability of the fabric is stronger than that of the leads, the lead breakage under the effect of a tensile force is avoided, and the stretchability of the leads is strengthened.

Description

technical field [0001] The invention relates to smart wear technology, in particular to a wire structure and smart clothes. Background technique [0002] Since smart clothing needs to measure a variety of human physiological data, smart clothing is usually integrated with multiple sensors, processors and other electronic devices. These electronic devices will involve power supply and data transmission issues during operation. [0003] In the prior art, when a wearable circuit supplies power and transmits data to an electronic device, a low-cost and easy-to-implement method of wire is often used. [0004] However, in the process of applying wires to smart clothing, it will be found that because smart clothing needs to collect physiological data from the human body, smart clothing needs to fit the human body more than traditional clothing, and it is often used with higher elasticity. fabric; however, the wire is not stretchable. In the process of wearing smart clothing, when ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A41D1/00A41D27/00
CPCA41D1/002A41D27/00
Inventor 王键强
Owner ZHEJIANG HUAER TEXTILE TECH