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EFFECTS OF HYDROSTATIC EXTRUSION ON THE MECHANICAL AND THERMAL PROPERTIES OF POLYPROPYLENE

机译:静液压挤出对聚丙烯力学和热学性能的影响

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摘要

The structure change in spherulites for hydrostatically extruded polypropylene (PP) was studied by the use of internal friction measurements and thermophotometry tests. The onset temperature of the beta-loss peak of the PP sample decreases with increasing reduction in area, R. For the extrudates below R = 50%, the peak temperature of a-loss shifts to lower temperature. The alpha and beta absorptions for the extrudates up to R = 50% become broad and overlap with each other. The intensity of the beta-loss peak, Delta(max), is maximum for the extrudate with R = 50%. The results of tan delta, damping, and the intensity of the beta-loss peak indicate that the mechanism of molecular chain deformation is divided into two stages, below and above R = 50%. The results are due to spherulitic changes, i.e. the shape of spherulites changed from spherical to elliptical in the extrudates above R = 50% and the spherulite with R = 50% changed from coarse structure to a finer one by the imposition of hydrostatic pressure. [References: 30]
机译:通过使用内摩擦测量和热光度法研究了静液压挤出聚丙烯(PP)球晶的结构变化。 PP样品的β损失峰的起始温度随着面积R的减小而降低。对于低于R = 50%的挤出物,a损失的峰温度移至较低温度。 R = 50%的挤出物的α和β吸收变宽并相互重叠。对于R = 50%的挤出物,β损失峰的强度Delta(max)最大。 tanδ,阻尼和β损失峰强度的结果表明,分子链变形的机理分为两个阶段,低于和高于R = 50%。结果是由于球状体的变化,即,通过施加静水压力,在R = 50%以上的挤出物中,球状体的形状从球形改变为椭圆形,而R = 50%的球状体的形状从粗糙结构变为更细的球状体。 [参考:30]

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