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The electrical and thermal conductivity of woven pristine and intercalated graphite fiber-polymer composites

机译:编织的原始和插层石墨纤维-聚合物复合材料的电导率和导热率

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摘要

A series of woven fabric laminar composite plates and narrow strips were fabricated from a variety of pitch-based pristine and bromine intercalated graphite fibers in an attempt to determine the influence of the weave on the electrical and thermal conduction. It was found generally that these materials can be treated as if they arc homogeneous plates. The rule of mixtures describes the resistivity of the composite fairly well if it is realized that only the component of the fibers normal to the equipotential surface will conduct current. When the composite is narrow with respect to the fiber weave, however, there is a marked angular dependence of the resistance which was well modeled by assuming that the current follows only along the fibers (and not across them in a transverse direction), and that the contact resistance among the fibers in the composite is negligible. The thermal conductivity of composites made from less conductive fibers more closely followed the rule of mixtures than that of the high conductivity fibers, though this is thought to be an artifact of the measurement technique. Electrical and thermal anisotropy could be induced in a particular region of the structure by weaving together high and low conductivity fibers in different directions, though this must be done throughout all of the layers of the structure as interlaminar conduction precludes having only the top layer carry the anisotropy. The anisotropy in the thermal conductivity is considerably less than either that predicted by the rule of mixtures or the electrical resistivity.
机译:用各种基于沥青的原始和溴插层石墨纤维制造了一系列机织层状复合板和窄条,试图确定编织对导电和导热的影响。通常发现,这些材料可以被视为均质板。如果认识到只有垂直于等电位表面的纤维成分会传导电流,则混合物的规则很好地描述了复合材料的电阻率。但是,当复合材料相对于纤维编织较窄时,电阻存在明显的角度依赖性,可以通过假设电流仅沿着纤维(而不是沿横向穿过纤维)流动来很好地建模。复合材料中纤维之间的接触电阻可以忽略不计。由高导热纤维制成的复合材料的热导率比高导热纤维更严格地遵循混合规则,尽管这被认为是测量技术的产物。通过将高和低电导率纤维沿不同方向编织在一起,可以在结构的特定区域中引起电各向异性和热各向异性,尽管这必须在结构的所有层中都进行,因为层间传导会阻止仅顶层携带导电层。各向异性。导热率的各向异性远小于混合物规则或电阻率所预测的各向异性。

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