首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Wide-Angle X-ray Scattering Study of the Lamellar/Fibrillar Transition for a Semi-crystalline Polymer Deformed in Tension in Relation with the Evolution of Volume Strain
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Wide-Angle X-ray Scattering Study of the Lamellar/Fibrillar Transition for a Semi-crystalline Polymer Deformed in Tension in Relation with the Evolution of Volume Strain

机译:张力变形的半结晶聚合物的层状/原纤维转变的广角X射线散射研究与体积应变的演变有关

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摘要

This work is devoted to the study of the deformation mechanisms of a high-density polyethylene deformed in tension. Specific treatments were applied to synchrotron wide-angle X-ray scattering patterns obtained in situ with the aim of quantifying: (i) the evolution of the apparent crystal sizes during the deformation process, (ii) the reorientation dynamics of the fragmented crystals while aligning their chains along the drawing axis during the establishment of the fibrillar morphology, and (iii) the reorientation dynamics of the amorphous chains. In addition, the volume strain evolution was measured using 3D digital image correlation. The cavitation phenomenon was found to mainly occur during the lamellae fragmentation phase. At the end of the deformation process, when the lamellar structure is destroyed, the fragmented crystals have new degrees of freedom and become free to rotate to align their chains along the drawing axis. Crystal fragmentation is then no longer needed to allow material deformation, and there is no further volume strain increase. (C) 2015 Wiley Periodicals, Inc.
机译:这项工作致力于研究受拉变形的高密度聚乙烯的变形机理。对现场获得的同步加速器广角X射线散射图样进行了特殊处理,目的是量化:(i)变形过程中表观晶体尺寸的演变,(ii)对准时碎片晶体的重新取向动力学在原纤维形态的建立过程中,它们沿着拉制轴的链;(iii)无定形链的重新取向动力学。另外,使用3D数字图像相关性测量了体积应变的演变。发现空化现象主要发生在薄片破碎阶段。在变形过程结束时,当层状结构被破坏时,碎裂的晶体具有新的自由度,并且可以自由旋转以沿拉伸轴对齐其链。这样就不再需要晶体碎裂来使材料变形,并且不会进一步增加体积应变。 (C)2015威利期刊公司

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