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Time-Resolving Study of Stress-Induced Transformations of Isotactic Polypropylene through Wide Angle X-ray Scattering Measurements

机译:通过广角X射线散射测量的应力诱导的全同立构聚丙烯相变的时间分辨研究

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摘要

The development of a highly oriented fiber morphology by effect of tensile deformation of stereodefective isotactic polypropylene (iPP) samples, starting from the unoriented γ form, is studied by following the transformation in real time during stretching through wide angle X-ray scattering (WAXS) measurements. In the stretching process, after yielding, the initial γ form transforms into the mesomorphic form of iPP through mechanical melting and re-crystallization. The analysis of the scattering invariant measured in the WAXS region highlights that the size of the mesomorphic domains included in the well oriented fiber morphology obtained at high deformations increases through a process which involves the coalescence of the small fragments formed by effect of tensile stress during lamellar destruction with the domain of higher dimensions.
机译:通过从无取向的γ形式开始的立体缺陷的全同立构聚丙烯(iPP)样品的拉伸变形的影响,开发了高度取向的纤维形态,方法是通过在广角X射线散射(WAXS)拉伸过程中实时跟踪转变来进行研究测量。在拉伸过程中,屈服后,初始的γ形式通过机械熔化和重结晶转变为iPP的同晶形式。对WAXS区域中测得的散射不变性的分析表明,在高变形下获得的取向良好的纤维形态中包括的同构域的尺寸,通过涉及层状拉伸应力作用而形成的小碎片聚结的过程而增加。破坏范围更大的领域。

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