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Tensile, electrical and thermal properties of vapor grown carbon fibers composites

机译:气相生长碳纤维复合材料的拉伸,电和热性能

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This chapter presents a study of the DC electrical resistivity and thermal conductivity of VGCF filled polypropylene (PP). The electrical resistivity exhibits a characteristic percolating behavior. Because of the low degree of graphite perfection, the fraction of VGCF required to achieve percolation was higher than expected. Also non-linear I-V characteristics and time dependent electrical resistivity effects were observed. The thermal conductivity of the composites agrees with the predictions of the effective medium theory. To enhance both the mechanical and transport properties an alternative technique must be used. It is well known that most crystalline polymers can be self-reinforced by forming a fibrilar structure if stretched at high temperature. However, the production of carbon fiber reinforced composities in fibrilar form is not easy. In fact, the dimensional characteristics of the fibrilar structure are much smaller than the average fiber length in a composite. Due to their small dimensions, sub-micron VGCF could be suitable fillers to incorporate in such a structure. Hence, the feasibility of processing highly oriented thermoplastic composities reinforced with VGCF is also studied herein. The mechanical behavior of these composites, as well as their DC response over a wide range of applied electrical fields, are repported, showing that this technique offers good prospects for property enhancement.
机译:本章介绍了VGCF填充聚丙烯(PP)的直流电阻率和导热率的研究。电阻率表现出特征性的渗滤行为。由于石墨的完美度较低,因此实现渗滤所需的VGCF分数高于预期。还观察到非线性I-V特性和随时间变化的电阻率效应。复合材料的热导率与有效介质理论的预测一致。为了增强机械性能和运输性能,必须使用替代技术。众所周知,如果在高温下拉伸,大多数结晶聚合物可以通过形成纤维状结构而自我增强。然而,以纤维状形式生产碳纤维增强复合材料并不容易。实际上,纤维状结构的尺寸特征比复合物中的平均纤维长度小得多。由于其较小的尺寸,亚微米VGCF可能是适合并入这种结构的填充剂。因此,本文还研究了处理用VGCF增强的高度取向的热塑性复合材料的可行性。这些复合材料的机械性能以及它们在广泛应用电场中的直流响应得到了报道,表明该技术为提高性能提供了良好的前景。

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