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Shear-induced migration of conductive fillers in injection molding

机译:注射成型中剪切引起的导电填料迁移

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The effect of shear-induced conductive filler migration on surface and volume conductivity of injection molded articles of polystyrene and polypropylene with carbon black was investigated. It was found that the loss of conductivity was most significant when the mean particle concentration was at or slightly above the percolation threshold. The compounds with mean particle concentration wen above the percolation threshold showed no loss at all. The conductivity decreased with the increase of shear rate used in molding. The removal of surface layers by excimer laser led to restoration of the conductivity to the value of well-mixed, compression-molded specimens. The thickness of surface layer removed before conductivity was restored was found to be a strong function of the shear rate and the nature of polymer used. (C) 2004 Society of Plastics Elighieers.
机译:研究了剪切诱导的导电填料迁移对具有炭黑的聚苯乙烯和聚丙烯注塑制品的表面和体积电导率的影响。发现当平均颗粒浓度等于或略高于渗滤阈值时,电导率的损失最显着。平均颗粒浓度高于渗滤阈值的化合物完全没有损失。电导率随成型中剪切速率的增加而降低。通过准分子激光去除表面层导致电导率恢复到充分混合,压缩成型的样品的值。发现在恢复导电性之前去除的表面层的厚度与剪切速率和所用聚合物的性质密切相关。 (C)2004年塑料Elighieers协会。

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