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Oriented crystallization of long chain branched polypropylene induced by step-shear deformation in pre-crystallization regime

机译:在结晶制度中取阶段剪切变形诱导的长链支化聚丙烯的定向结晶

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The oriented crystallization of long chain hyper-branched polypropylene (LCB-PP) induced by shear deformation in the pre-crystallization regime was investigated through simultaneous time-resolved synchrotron wide-angle and small-angle X-ray scattering (WAXS and SAXS) measurements and compared with that of linear PP (L-PP). Highly oriented crystallization was induced in LCB-PP by the application of a step-shear in the pre-crystalline regime; in contrast, the crystalline lamellae of L-PP were slightly oriented. In addition, LCB-PP formed daughter lamellae whose a-axis was oriented along the shear direction. The oriented crystallization of LCB-PP induced by the step-shear was related to its primary structure in the following manner. Since the existence of branched chains increased the relaxation time of the LCB-PP chains, the elongated LCB-PP chains were remained for longer after the step-shear deformation. In addition, the branching points of LCB-PP aided the formation of point-like precursors for crystallization. Consequently, these point-like precursors were arrayed along the shear direction and transformed into thread-like precursors. This caused the rapid formation of highly oriented shish-kebab structures. Furthermore, since short chains that caused the formation of daughter lamellae were covalently tethered to the kebab parts in LCB-PP, the growth of the daughter lamellae were spatially restricted owing to which the a-axis of the daughter lamellae in LCB-PP was oriented along the shear direction. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过同时分辨的同步同步调节和小角度X射线散射(蜡和SAX)测量,研究通过剪切变形中通过剪切变形诱导的长链超分支聚丙烯(LCB-PP)的定向结晶并与线性PP(L-PP)进行比较。通过在预结晶的制度中施加步进剪切,在LCB-PP中诱导高度取向的结晶;相反,L-PP的结晶薄片略微取向。另外,LCB-PP成形的子薄片,其沿剪切方向定向其轴。通过阶梯剪诱导的LCB-PP的定向结晶以下列方式与其主要结构有关。由于支链的存在增加了LCB-PP链的弛豫时间,因此在步进剪切变形后保持细长的LCB-PP链延长。另外,LCB-PP的分支点赋予形成点状前体进行结晶。因此,这些点状前体沿剪切方向排列并转化成螺纹的前体。这导致高度定向的烤肉串结构的快速形成。此外,由于导致子薄片形成的短链与LCB-PP中的kebab部分共价束缚,因此子薄片的生长在空间上限制,其中LCB-PP中的子薄膜的轴轴是取向的沿着剪切方向。 (c)2017 Elsevier Ltd.保留所有权利。

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