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首页> 外文期刊>Journal of Applied Polymer Science >Special electrical conductivity of carbon black-filled two-phased thermoplastic vulcanizates
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Special electrical conductivity of carbon black-filled two-phased thermoplastic vulcanizates

机译:炭黑填充的两相热塑性硫化橡胶的特殊电导率

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The electrical properties of carbon black (CB)-filled two-phased thermoplastic vulcanizates (based on ethylene-propylene-diene copolymer and polypropylene, TPV) were investigated in this article. The results showed that the composites had a singularity in electrical conductivity compared with CB-filled polypropylene composites. Both the loading of CB and the concentration of rubber phase in TPV had the remarkable effect on electrical property of composites. The rubber particles in TPV presented unique and competitive effects in constructing CB electrical conducting network, namely exclusion and block effects. The percolation threshold value of composites apparently decreased with rubber phase content. However, percolation behavior of composites was weakened when rubber phase content was very high. The percolation behavior of composites with loading of CB is weakened apparently by rubber particles. When annealing the composites in the melt state, the resistance-time dependence of composites was strongly affected by the pressure of mold annealing. Although air aging had a negligible effect on the electrical properties, the microstructure of the CB/TPV composites had changed during air aging. CB/TPV composite only exhibited the negative temperature coefficient behavior even though the temperature was in the melting region of polypropylene, which was mainly attributed to the exclusive effect brought by the thermal expansion of rubber particles. The special electrical properties of CB/TPV can find potential application in many fields.
机译:本文研究了炭黑(CB)填充的两相热塑性硫化橡胶(基于乙烯-丙烯-二烯共聚物和聚丙烯,TPV)的电性能。结果表明,与CB填充聚丙烯复合材料相比,该复合材料的电导率具有奇异性。 TPV中CB的负载量和橡胶相的浓度均对复合材料的电性能产生显着影响。 TPV中的橡胶​​颗粒在构建CB导电网络方面表现出独特而竞争的效果,即排阻和阻滞效果。随着橡胶相含量的增加,复合材料的渗透阈值明显降低。但是,当橡胶相含量很高时,复合材料的渗透行为会减弱。橡胶颗粒明显降低了复合材料在含CB时的渗透行为。当在熔融状态下对复合材料进行退火时,复合材料的电阻时间依赖性受模具退火压力的强烈影响。尽管空气老化对电性能的影响可忽略不计,但CB / TPV复合材料的微观结构在空气老化过程中发生了变化。即使温度在聚丙烯的熔融区域,CB / TPV复合材料也仅表现出负温度系数行为,这主要归因于橡胶颗粒热膨胀带来的排他性效应。 CB / TPV的特殊电性能可以在许多领域找到潜在的应用。

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