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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Thermal, Tensile, Electrical, Dynamic Mechanical Thermal and Rheological Properties of Polyvinylidene Fluoride and Fluoroelastomer Composites Filled with Carbon Black
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Thermal, Tensile, Electrical, Dynamic Mechanical Thermal and Rheological Properties of Polyvinylidene Fluoride and Fluoroelastomer Composites Filled with Carbon Black

机译:热,拉伸,电气,动态机械热性和流变性能,含有炭黑的聚偏二氟乙烯和含氟弹性体复合材料

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摘要

The present work was focused on studying the effects of different CB loadings on the rheological, thermal, tensile, dynamic mechanical and electrical properties of polyvinylidenefluoride (PVDF) and FKM composites. To these ends, the CB grade and method chosen for compound preparation were CB (N330) and melt mixing, respectively. The composites were melt blended with CB at 190 degrees C in an internal mixer, after which the properties of filled and unfilled composites were compared. The presence of CB improved the mechanical properties, such as the Young's modulus and tensile strength, and increased thermal stability given the high thermal stability of CB and the interaction between the CB particles and the polymer matrices. The dynamic mechanical thermal analysis (DMTA) showed the glass transition temperatures of the composites. The analysis also revealed that the area under the loss tangent (tan delta) peak decreased and that the tan delta temperature of the rubber phase increased with CB loading. The increase in the electrical conductivity of the composites under different CB loadings was also examined, and the percolation threshold of conductive thermoplastic vulcanizate composite based on conductive CB was observed. The effect of CB and its content on rheological behavior of the PVDF/FKM blends was studied and the experimental data was correlated by a physical model named General Equation Model (GEM). A relation between rheology and conductivity of the blends with filler percolation was found.
机译:本作本作的重点是研究不同CB载荷对聚偏二氟化(PVDF)和FKM复合材料的流变,热,拉伸,动态机械性能的影响。对于这些目的,分别选择化合物制剂的CB级和方法分别是Cb(N330)和熔融混合。在内部混合器中,将复合材料在190℃下与CB混合,然后比较填充和未填充复合材料的性质。 CB的存在改善了机械性能,例如杨氏模量和拉伸强度,并且鉴于Cb的高热稳定性和Cb颗粒与聚合物基质之间的相互作用增加,增加的热稳定性。动态机械热分析(DMTA)显示了复合材料的玻璃化转变温度。该分析还揭示了损失正切(TAN DELTA)峰下的面积降低,橡胶阶段的TANδ温度随CB载荷而增加。还检查了不同CB载荷下复合材料的电导率的增加,并且观察了基于导电CB的导电热塑性硫化酸盐复合物的渗透阈值。研究了CB的影响及其对PVDF / FKM混合物的流变行为的影响,并通过名为通用方程模型(GEM)的物理模型来相关的实验数据。发现了具有填充物渗透的共混物的流变学和导电性之间的关系。

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