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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Simultaneous electrical and rheological measurements on melts of conductive polymer composites under elongation~*
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Simultaneous electrical and rheological measurements on melts of conductive polymer composites under elongation~*

机译:延伸率下导电聚合物复合材料熔体的同时电学和流变学测量〜*

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摘要

The structure development in conductive polymer composites during deformation is a topic of great interest as the structure of conductive particle pathways governs electrical properties of the composite. In this paper simultaneous electrical and rheological measurements in elongation are introduced for the first time using a modified Münstedt tensile rheometer. Such kind of experiment can help in understanding the relationships between processing and properties of conductive polymer composites. The first results presented were obtained on polystyrene containing 4 vol.% of carbon black at the temperature of 150 °C. Similar to the shear, the conductivity development under elongation is given by a competition of flow-induced destruction and build-up of particle structures and it is considerably influenced by the strain rate applied.
机译:导电聚合物复合材料在变形过程中的结构发展是引起人们极大兴趣的主题,因为导电颗粒通道的结构决定了复合材料的电性能。在本文中,首次使用改进的Münstedt拉伸流变仪同时进行了伸长率的电学和流变学测量。这种实验可以帮助理解导电聚合物复合材料的加工与性能之间的关系。所列的第一个结果是在150°C的温度下在含有4%(体积)炭黑的聚苯乙烯上获得的。与剪切类似,伸长率下的电导率发展是由流动引起的破坏和颗粒结构堆积的竞争所给定的,并且它受到施加的应变率的很大影响。

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