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首页> 外文期刊>Journal of Macromolecular Science. Physics >Simulation of electrical resistivity of carbon black filled rubber under elongation
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Simulation of electrical resistivity of carbon black filled rubber under elongation

机译:伸长率下炭黑填充橡胶电阻率的模拟

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It has been known that the carbon black (CB) network is responsible for the electrical and mechanical behaviors of filled rubber. Due to the complexity involved in the filled rubber in relation to the conductive mechanism of the CB network, there has been little work concerned with simulation of the electrical behavior at large strains. Based upon an infinite circuit model, the electrical resistivity of CB filled rubber under elongation is simulated. For CB (N330) filled natural rubber with volume fraction of 27.5%, the simulated electrical resistivity increases with elongation at small stains, corresponding to the breakup of the agglomerates. The reduction in resistivity at larger strains corresponds to the decrease of the junction width, which results in a decrease of the contact resistance. Good agreement is found between the simulations and the experimental data available in the literature. The simulated results confirm the effects of the breakdown of the CB network and the alignment of CB aggregates under strain on the electrical resistivity.
机译:众所周知,炭黑(CB)网络负责填充橡胶的电气和机械行为。由于与CB网络的导电机制相关的填充橡胶涉及的复杂性,因此很少涉及模拟大应变下的电学行为。基于无限电路模型,模拟了CB填充橡胶在伸长下的电阻率。对于体积分数为27.5%的CB(N330)填充天然橡胶,在较小的污点处,模拟电阻率随伸长率的增加而增加,这对应于附聚物的破裂。在较大应变下电阻率的降低对应于结宽度的减小,这导致接触电阻的减小。在仿真和文献中可获得的实验数据之间找到了很好的一致性。仿真结果证实了CB网络的击穿和应变下CB聚集体的排列对电阻率的影响。

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