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Deformation theory of an electro-conductive composite composed of entangled network of carbon nanotubes embedded in elastic polyurethane

机译:弹性聚氨酯嵌入碳纳米管缠结网络组成的电导复合材料的变形理论

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摘要

A strain sensing polymer composite consisting of a network of entangled multi-walled carbon nanotubes in a thermoplastic polyurethane elastomer is tested by tensile and bending deformation. The composite is prepared by taking a non-woven polyurethane filter membrane, enmeshing it with carbon nanotubes and melding them together. The testing has shown that the material can be elongated as much as 400% during which the electrical resistance is increased more than 270 times. To describe the composite strain dependent resistance, a rheological model is proposed which takes into account a decrease of local contact forces between nanotubes as well as the reduction of number of contacts with deformation. The theory is used for description of sensing element deformation and resistance when simple elongation and repeated bending is exerted.
机译:通过拉伸和弯曲变形测试由热塑性聚氨酯弹性体中纠缠的多壁碳纳米管网络组成的应变感应聚合物复合材料。复合材料的制备方法是:取一非织造聚氨酯滤膜,将其与碳纳米管啮合,然后将它们融合在一起。测试表明,该材料可以伸长多达400%,在此期间电阻增加了270倍以上。为了描述与应变有关的复合电阻,提出了一种流变模型,该模型考虑了纳米管之间局部接触力的减小以及变形引起的接触数的减少。该理论用于描述简单延伸和反复弯曲时感应元件的变形和阻力。

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