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Nanostructure Evolution during Uni-axial Deformation of PET - a WAXS and SAXS Study using Synchrotron Radiation

机译:使用同步辐射的PET - A蜡和萨克斯研究期间纳米结构演变

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In this work, the structural evolution and damage of PET during stretching is assessed by wide- and small-angle X-ray scattering (respectively, WAXS and SAXS) experiments in specimens pre-deformed at different strain levels (ex-situ characterization). Injection moulded PET rectangular tensile specimens were stretched (at 2 mm/min) into the plastic domain in a universal test machine at different strain levels at room temperature. The structure of the central zone of the deformed specimens was then characterized by WAXS and SAXS experiments using an X-ray synchrotron source. PET was initially (before stretching) amorphous. A strong molecular orientation in the stretching direction is quickly developed for the initial plastic deformation levels, evidenced by strong equatorial WAXS reflections. This orientation rapidly levels off, remaining constant during further stretching. The WAXS patterns are accompanied with no reflections on SAXS, evidencing a local ordering phenomenon, typical of nematic liquid-crystalline structures. The SAXS patterns evidence the occurrence of some voiding in the cold drawing regime just after yielding. These anisotropic voids are oriented perpendicular to the stretching direction, as in a craze-like structure. The void size drastically increases at the onset of the strong strain hardening behaviour.
机译:在这项工作中,通过在不同菌株水平预变形的标本中的样品中的宽和小角度X射线散射(分别,蜡和淋巴)实验来评估拉伸期间PET的结构演变和损伤。将注塑成型PET矩形拉伸试样在室温下在不同应变水平的通用试验机中拉伸(在2mm / min)中。然后使用X射线同步rotron源的蜡和淋巴实验表征变形样品的中心区的结构。宠物最初(在拉伸之前)无定形。在初始塑性变形水平上迅速开发了拉伸方向上的强的分子取向,通过强赤道蜡反射证明。这种取向在进一步拉伸期间迅速升级,仍然是恒定的。蜡像图案伴随着萨克斯的反射,证明了典型的甲型液晶结构的局部排序现象。萨克斯模式证据证据表明在屈服后刚刚在冷绘制制度中存在一些空隙。这些各向异性空隙垂直于拉伸方向定向,如在漂泊的结构中。在强应变硬化行为的开始时,空隙尺寸急剧增加。

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