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Slip and Frictional Heating of Extruded Polyethylene Melts

机译:挤出聚乙烯熔化的滑动和摩擦加热

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Extrusion of polymer melts with slip at the die generates frictional heating. The relationship between slip flow and frictional heating during the continuous extrusion of a non-slipping linear low-density (LLDPE) and a slipping high-density polyethylene (HDPE), respectively, both pure as well as blended with a fluoropolymer processing aid (PA), was investigated in this work by Rheo-particle image velocimetry and thermal imaging. Significant rises in temperature were measured under slip and no slip conditions, being these much higher than the values predicted by the adiabatic flow assumption. Clear difference was made between viscous and frictional heating before the stick-slip regime for the LLDPE, even though they could not be distinguished from one another at higher stresses. Such a difference, however, could not be made for the slipping HDPE, since overall in the presence of slip, frictional and viscous heating act synergistically to increase the melt temperature.
机译:挤出聚合物熔体在模具上滑动产生摩擦加热。在连续挤出非滑动线性低密度(LLDPE)和滑动高密度聚乙烯(HDPE)的连续挤出过程中滑动流动和摩擦加热的关系,纯净的以及与含氟聚合物加工辅助装置(PA )通过Rheo-粒子图像速度和热成像在这项工作中研究。在滑动和无滑动条件下测量温度大幅上升,这些远高于绝热流动假设所预测的值。在LLDPE的粘性制度之前,粘性和摩擦加热之间的粘性和摩擦加热是明确的差异,即使它们不能在较高的应力下彼此区分。然而,这种差异不能用于滑动HDPE,因为在滑倒的情况下整体而言,摩擦和粘性加热协同作用以增加熔体温度。

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