Cavitation Behavior of Semi-Crystalline Polymers during Uniaxial Stretching Studied by Synchrotron Small-Angle X-Ray Scattering

Baobao Chang, K. Schneider, I. Kuehnert, G. Heinrich
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Abstract

Cavitation appears in many semi-crystalline polymers when they are subjected to uniaxial stretching above their glass transition temperatures. Generally, the formation of voids is influenced by the morphology of semi-crystalline polymers, including their lamellae thickness, lamellae orientation, as well as the arrangement of the amorphous phase. Upon stretching, the size of the voids changes as a function of the local strain. Synchrotron small-angle X-ray scattering (SAXS) can be used as a powerful method to in-situ monitor the evolution of voids with high time and spatial resolution. In this chapter, recent reports about the cavitation behavior of semi-crystalline polymers studied by SAXS are reviewed. Afterwards, the theoretical background related to the SAXS technique is introduced. Lastly, some exemplary results about the cavitation behavior of microinjection-molded isotactic-polypropylene, studied by synchrotron SAXS measurements, are presented.
同步加速器小角x射线散射研究了半晶聚合物在单轴拉伸过程中的空化行为
在许多半结晶聚合物中,当它们在玻璃化转变温度以上受到单轴拉伸时,会出现空化现象。一般来说,孔洞的形成受半晶聚合物的形貌影响,包括其片层厚度、片层取向以及非晶相的排列。拉伸后,空隙的大小随局部应变的变化而变化。同步加速器小角x射线散射技术(SAXS)是一种具有高时间和空间分辨率的原位监测孔洞演化的有效方法。本章综述了近年来用SAXS研究半结晶聚合物的空化行为。随后,介绍了SAXS技术的相关理论背景。最后,给出了用同步加速器SAXS测量方法研究微注射成型等规聚丙烯的空化行为的一些示例性结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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