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Effect of axial stretching on electrical resistivity of short carbon fibre and carbon black filled conductive rubber composites

机译:轴向拉伸对短碳纤维和炭黑填充导电橡胶复合材料电阻率的影响

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摘要

The variation of electrical resistivity of carbon black and short carbon fibre (SCF) filled rubber composites was studied against the degree of strain at constant strain rate. It was found that both the degree of strain and strain rate affect the electrical resistivity of the composites. The change in resistivity against the strain and strain rate depends both on the concentration and the type of conductive filler. The incorporation of short carbon fibres (SCF0 imparts higher conductivity to the composite than carbon black at the same level of loading. Composites filled with carbon black exhibit better mechanical properties than SCF filled composites. Electrical setting, ie a permanent change in electrical resistivity, was observed during extension-retraction cycles. A good correlation was found between the mechanical response and the electrical response towards strain sensitivity. The results of different experiments are discussed in the light of breakdown and formation of conductive networks in the filled rubber composites.
机译:研究了炭黑和短碳纤维(SCF)填充橡胶复合材料的电阻率随恒定应变率下应变程度的变化。发现应变的程度和应变率都影响复合材料的电阻率。电阻率对应变和应变率的变化取决于导电填料的浓度和类型。在相同的负载水平下,掺入短碳纤维(SCF0可使复合材料的导电性比炭黑更高。填充炭黑的复合材料比填充SCF的复合材料具有更好的机械性能。电定型,即电阻率的永久变化为在拉伸-收缩循环过程中观察到了良好的相关性,在应变响应的机械响应和电响应之间发现了良好的相关性,根据填充橡胶复合材料的击穿和导电网络的形成,讨论了不同实验的结果。

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