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首页> 外文期刊>Open Journal of Organic Polymer Materials >Effect of Molecular Weight and Molecular Distribution on Skin Structure and Shear Strength Distribution near the Surface of Thin-Wall Injection Molded Polypropylene
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Effect of Molecular Weight and Molecular Distribution on Skin Structure and Shear Strength Distribution near the Surface of Thin-Wall Injection Molded Polypropylene

机译:分子量和分子分布对薄壁注塑聚丙烯表面附近皮肤结构和剪切强度分布的影响

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摘要

In this study, the relationship between skin structure and shear strength distribution of thin-wall injection molded polypropylene (PP) molded at different molecular weight and molecular distribution was investigated. Skin-core structure, cross-sectional morphology, crystallinity, crystal orientation, crystal morphology and molecular orientation were evaluated by using polarized optical microscope, differential scanning calorimeter, X-ray spectroscopic analyzer and laser Raman spectroscopy, respectively, while the shear strength distribution was investigated using a micro cutting method called SAICAS (Surface And Interfacial Cutting Analysis System). The results indicated that the difference of molecular weight and molecular weight distribution showed own skin layer thickness. Especially, high molecular weight sample showed thicker layer of the lamellar orientation and molecular orientation than low molecular weight sample. In addition, wide molecular distribution sample showed large crystal orientation layer.
机译:在这项研究中,研究了薄壁注塑聚丙烯(PP)在不同分子量和分子分布下的表皮结构与剪切强度分布之间的关系。分别使用偏光光学显微镜,差示扫描量热仪,X射线光谱分析仪和激光拉曼光谱仪评估了皮芯结构,截面形态,结晶度,晶体取向,晶体形态和分子取向,而剪切强度分布为使用称为SAICAS(表面和界面切割分析系统)的微切割方法进行了研究。结果表明,分子量和分子量分布的差异表现出自身的表皮层厚度。特别是,高分子量样品比低分子量样品显示出较厚的层状取向和分子取向层。另外,分子分布宽的样品显示出较大的晶体取向层。

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