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Fibrillar morphology formation in a sheared polypropylene melt

机译:在剪切的聚丙烯熔体中形成纤维状形态

摘要

In common polymer processing operations such as injection molding, film blowing, and fiber spinning, the molten polymer is subjected to shear and/or elongational flow fields that are often so intense to induce the formation of highly oriented crystalline structures, namely a fibrillar morphology. This peculiar morphology highly affects the resulting mechanical and functional properties of semicrystalline polymers and thus the study of the conditions under which it forms are of high scientific and industrial interest. In this work, crystallization during step shear experiments at 140°C were carried out in a plate-plate geometry by means of a Linkam shearing cell. The evolution of crystalline structures was observed during the tests at a fixed radial position. After the shear step the samples were allowed to fully crystallize at the test temperature and then were cooled down to room temperature. The samples were then analyzed by optical microscopy and the radial position at which a transition between spherulitic and fibrillar morphology took place was measured. Since in a plate-plate geometry, each radial position means a different shear rate, the analysis of the samples allowed to detect the critical shear rate at which, after a given shearing time, the fibrillar morphology replaces the spherulitic structure. © 2014 American Institute of Physics.
机译:在诸如注射成型,吹膜和纤维纺丝之类的普通聚合物加工操作中,使熔融聚合物经受剪切和/或伸长流场,该剪切流和/或伸长流场通常是如此强烈以致诱导形成高度取向的晶体结构,即原纤维形态。这种特殊的形态极大地影响了半结晶聚合物的机械性能和功能特性,因此研究其形成条件具有很高的科学和工业价值。在这项工作中,借助于Linkam剪切室,以板-板几何形状在140°C的分步剪切实验过程中进行了结晶。在测试过程中,在固定的径向位置观察到晶体结构的演变。在剪切步骤之后,使样品在测试温度下完全结晶,然后冷却至室温。然后通过光学显微镜分析样品,并测量在球状和原纤维形态之间过渡的径向位置。由于在板-板几何形状中,每个径向位置表示不同的剪切速率,因此对样品的分析允许检测临界剪切速率,在给定的剪切时间后,该临界剪切速率的原纤维形态取代了球状结构。 ©2014美国物理研究所。

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