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The effect of shear-induced migration of conductive fillers on conductivity of injection molded articles

机译:剪切诱导的导电填料迁移对注塑制品电导率的影响

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Conductive filler particles tend to migrate in non-uniform shear fields such as during mold filling from the regions of high shear stress to low shear stress leading to the loss of conductivity in polymeric articles. In this work, the effect of conductive filler migration on surface and volume conductivity was investigated in conductive compounds of polystyrene and polypropylene and carbon black. Injection molded articles with mean particle concentration of Φ_c and 3.5Φ_c where Φ_c is the percolation threshold, showed volume conductivity values of respectively 10~(-18) and 10~(-4) S-cm, while compression molded specimens with same composition offered volume conductivity of 10~(-4) S-cm. Removal of surface layers from injection molded specimens by excimer laser ablation technique restored the conductivity to 10~(-4) S-cm. The extent of migration was evaluated in terms of the thickness of polymer layers removed from the surface, which depended on the type of polymer used.
机译:导电填料颗粒倾向于在非均匀的剪切领域迁移,例如在从高剪切应力区域到低剪切应力的模具中填充,导致聚合物制品中的导电性的损失。在这项工作中,在聚苯乙烯和聚丙烯和炭黑的导电化合物中研究了导电填充物迁移对表面和体积传导性的影响。注射模塑制品的φ_c和3.5φ_c的平均颗粒浓度,其中φ_c是渗透阈值,显示出分别为10〜(-18)和10〜(-4)s-cm的体积电导率值,而具有相同组成的压缩模塑试样体积电导率为10〜(-4)S-cm。通过准分子激光烧蚀技术从注射模塑试样中除去表面层恢复到10〜(-4)S-cm的电导率。根据从表面除去的聚合物层的厚度来评估迁移程度,这取决于所用聚合物的类型。

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