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The effect of swelling and temperature on the electrical and mechanical behaviour of a filled rubber

机译:溶胀和温度对填充橡胶的电气和机械性能的影响

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The effect of swelling and temperature on the electrical resistivity of highly carbon black filled elastomers under strain is investigated. It is shown that swelling, even to a modest extent of less than 10%, has a marked effect upon the resistivity. The effect of a linear expansion due to swelling is much more marked than an equivalent tensile extension. The increase in electrical resistivity with swelling is also much greater than the increase produced by an equivalent reduction in the volume fraction of the carbon black alone. The increase depends upon the chemical nature of the swelling agent, and there is a relatively small effect of temperature induced volume change on resistivity, contrasting markedly with the large effect of the same volume increase produced by swelling. These observations suggest that on swelling there is a preferential migration of the solvent to the rubber/filler interfaces. This will push the carbon black aggregates apart and lead to a dramatic increase in the resistivity across the interface. There are also indications that at elevated temperatures the filler/rubber interactions are reduced.
机译:研究了膨胀和温度对高炭黑填充弹性体在应变下的电阻率的影响。结果表明,即使适度地小于10%,溶胀对电阻率也具有显着影响。膨胀引起的线性膨胀的影响比等效的拉伸伸长要明显得多。电阻率随溶胀的增加也远大于单独降低炭黑的体积分数所产生的增加。这种增加取决于溶胀剂的化学性质,并且温度引起的体积变化对电阻率的影响相对较小,与溶胀所产生的相同体积增加的大影响明显相反。这些观察结果表明,溶胀时,溶剂会优先迁移到橡胶/填料界面。这将使炭黑聚集体分开,并导致界面电阻率急剧增加。也有迹象表明,在升高的温度下,填料/橡胶的相互作用降低。

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