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Electrical and Thermal and Self-Healing Properties of Graphene-Thermopolyurethane Flexible Conductive Films

机译:石墨烯 - 热聚呋喃烷柔性导电膜的电气和热愈合性能

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摘要

We fabricated graphene-thermopolyurethane (G-TPU) flexible conductive film by a blending method and systematically investigated the electrical, thermal and self-healing properties of the G-TPU flexible conductive film by infrared light and electricity. The experimental results demonstrate that the G-TPU composite films have good conductivity and thermal conductivity in the appropriate mass content of graphene in the composite film. The composite films have the good electro-thermal and infrared light thermal response performances and electro-thermal response performance is closely related to the mass content of graphene in the composite film, but the infrared light thermal response performance is not. The scratch on the composite film can be completely healed, using electricity or infrared light. The healing efficiency of the composite film healed using infrared light is higher than that of using the electricity, while the healing time of the composite film is shorter. Regardless of the self-healing method, the temperature of the self-healing is a very important factor. The self-healing conductive composite film still exhibits a good conductivity.
机译:我们通过混合方法制造了石墨烯 - 热聚呋喃烷(G-TPU)柔性导电膜,并系统地研究了通过红外光和电力的G-TPU柔性导电膜的电气,热和自愈合性能。实验结果表明,在复合膜中,G-TPU复合膜在适当的石墨烯中具有良好的导电性和导热率。复合薄膜具有良好的电热和红外光热响应性能,电热响应性能与复合膜中石墨烯的质量含量密切相关,但红外光热响应性能不是。复合膜上的划痕可以完全愈合,使用电力或红外光。使用红外光愈合的复合膜的愈合效率高于使用电力的愈合效率,而复合膜的愈合时间较短。无论自愈合方法如何,自我愈合的温度都是一个非常重要的因素。自愈合的导电复合膜仍然表现出良好的导电性。

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