首页> 外国专利> CONDUCTIVE FIBER COMPRISING METAL NANOBELT AND CARBON NANOMATERIAL COMPOSITE, METHOD FOR PRODUCING CONDUCTIVE FIBER, FIBROUS STRAIN SENSOR, AND METHOD FOR PRODUCING FIBROUS STRAIN SENSOR

CONDUCTIVE FIBER COMPRISING METAL NANOBELT AND CARBON NANOMATERIAL COMPOSITE, METHOD FOR PRODUCING CONDUCTIVE FIBER, FIBROUS STRAIN SENSOR, AND METHOD FOR PRODUCING FIBROUS STRAIN SENSOR

机译:包含金属纳米带和碳纳米材料复合材料的导电纤维,生产导电纤维的方法,纤维应变传感器以及生产纤维应变传感器的方法

摘要

A conductive fiber including a metal-nanobelt-carbon-nanomaterial composite. A manufacturing method thereof includes preparing a composite including a carbon nanomaterial and metal nanobelts and manufacturing a conductive fiber by mixing the composite with a polymer. A fibrous strain sensor and a manufacturing method thereof are also provided. Thereby, a conductive fiber including a metal-nanobelt-carbon-nanomaterial composite, which is able to increase conductivity of the conductive fiber through synthesis of metal nanobelts enabling area contact and to exhibit good contact between the carbon nanomaterial and the metal nanobelts due to formation of the metal nanobelts on the surface of the carbon nanomaterial and superior dispersion uniformity, and a fibrous strain sensor including the conductive fiber can be obtained. The conductive fiber can be effectively applied to a strain sensor based on a principle by which resistance drastically increases with an increase in a distance between metal nanobelts aligned in a fiber direction upon tensile strain of metal nanobelts enabling area contact.
机译:包含金属-纳米-碳-纳米材料复合材料的导电纤维。其制造方法包括制备包括碳纳米材料和金属纳米带的复合材料,以及通过将复合材料与聚合物混合来制造导电纤维。还提供了一种纤维应变传感器及其制造方法。从而,包含金属-纳米纤维-碳-纳米材料复合物的导电纤维,其能够通过金属纳米带的合成而增加导电纤维的导电性,所述金属纳米带能够进行面积接触并且由于形成而在碳纳米材料和金属纳米带之间表现出良好的接触。通过使碳纳米材料表面的金属纳米带具有良好的分散均匀性,可以得到包括导电纤维的纤维应变传感器。导电纤维可以基于如下原理有效地应用于应变传感器:通过该原理,当金属纳米带的拉伸应变使得能够进行面积接触时,电阻随着沿纤维方向排列的金属纳米带之间的距离的增加而急剧增加。

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