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首页> 外文期刊>The Journal of Chemical Physics >Unexpected molecular weight dependence of shish-kebab structure in the oriented linear low density polyethylene/high density polyethylene blends
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Unexpected molecular weight dependence of shish-kebab structure in the oriented linear low density polyethylene/high density polyethylene blends

机译:定向线性低密度聚乙烯/高密度聚乙烯共混物中烤肉串结构的预期分子量依赖性

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In this study, highly oriented shish-kebab structure was achieved via imposing oscillatory shear on the melts of linear low density polyethylene (LLDPE)/high density polyethylene (HDPE) blends during the packing stage of injection molding. To investigate the effect of molecular weight of HDPE on the formation of shish-kebab structure, two kinds HDPE with large melt flow index (low molecular weight) and small melt flow index (high molecular weight) were added into LLDPE matrix. The structural characteristics of LLDPE/HDPE blends were systematically elucidated through two-dimensional wide-angle x-ray scattering, scanning electron microscopy, and differential scanning calorimetry. Interestingly, an unexpected molecular weight dependence of shish-kebab structure of the prepared samples was found that the addition of HDPE with low molecular weight resulted in an higher degree of orientation, better regularity of lamellar arrangement, thicker lamellar size, and higher crystal melting temperature than that adding HDPE with high molecular weight. Correspondingly, the blend containing low molecular weight HDPE had better tensile strength. A possible mechanism was suggested to elucidate the role of HDPE molecular weight on the formation of shish-kebab structure in the oriented blends, considering. the change of chain mobility and entanglement density with change of molecular weight. (c) 2008 American institute of Physics.
机译:在这项研究中,通过在注塑成型的填充阶段对线性低密度聚乙烯(LLDPE)/高密度聚乙烯(HDPE)共混物的熔体施加振荡剪切,实现了高取向的烤肉串结构。为了研究HDPE的分子量对烤肉串结构形成的影响,在LLDPE基质中加入了两种熔体流动指数大(低分子量)和熔体流动指数小(高分子量)的HDPE。通过二维广角X射线散射,扫描电子显微镜和差示扫描量热法系统地阐明了LLDPE / HDPE共混物的结构特征。有趣的是,发现所制备样品的烤肉串结构具有意想不到的分子量依赖性,发现添加低分子量的HDPE会导致更高的取向度,更好的层状排列规则,更厚的层状尺寸以及更高的晶体熔化温度而不是添加高分子量HDPE。相应地,包含低分子量HDPE的共混物具有更好的拉伸强度。考虑到一种可能的机理,阐明了HDPE分子量对定向共混物中烤肉串结构形成的作用。链迁移率和缠结密度随分子量的变化而变化。 (c)2008年美国物理研究所。

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