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Characterization of an amorphous surface layer on blown polyolefin film

机译:吹塑聚烯烃薄膜上无定形表面层的表征

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摘要

This study concerned an amorphous surface layer on blown polyethylene film with a composition different from that of the bulk. The surface layer was characterized by gentle probing with an atomic force microscope. The demonstration of an amorphous layer uniformly covering the surface of a blown Ziegler-Natta-catalyzed polyethylene (znPE) film reproduced previous reports. Removing the surface layer by solvent washing confirmed the hypothesis that the layer consisted of lower molecular weight, higher branch content fractions. A blown film of znPE blended with up to 30 wt % impact-modified high-melt-strength polypropylene (hmsPP) also exhibited an amorphous surface layer. In thin films, it was advantageous for the mobile, amorphous fractions of ethylene-propylene rubber (EPR) to locate at the surface rather than at the phase interface. The amorphous EPR tended to segregate into pools on the film surface, and this pointed to a substantial difference between the amorphous surface layers on the znPE and hmsPP/znPE blend films. Surface enrichment best described the compositional gradient that resulted from the concentration of lower molecular weight, higher branch content chains at the surface of the znPE film. Surface segregation was more appropriate for the emergence of EPR fractions as a separate phase on the surface of the hmsPP blend film. Films blown from a blend of a Ziegler-Natta-catalyzed polyethylene and a metallocene-catalyzed polyethylene (zn/mPE) and its blend with hmsPP reproduced the primary features of surface enrichment and surface segregation. Some differences between the znPE and zn/mPE films were attributed to the metallocene constituent of zn/mPE. (C) 2002 Wiley Periodicals, Inc. [References: 18]
机译:这项研究涉及吹塑聚乙烯薄膜上的非晶表面层,其组成与主体材料不同。表面层的特征在于用原子力显微镜进行轻柔探测。无定形层均匀地覆盖在吹制的齐格勒-纳塔催化的聚乙烯(znPE)薄膜表面上的演示再现了以前的报道。通过溶剂洗涤除去表面层证实了以下假设:该层由较低的分子量,较高的分支含量分数组成。掺有高达30 wt%的抗冲改性的高熔体强度聚丙烯(hmsPP)的znPE吹塑薄膜也表现出无定形的表面层。在薄膜中,乙烯-丙烯橡胶(EPR)的可移动无定形部分位于表面而非相界面处是有利的。非晶态的EPR倾向于在薄膜表面偏析成池,这表明znPE和hmsPP / znPE共混薄膜上的非晶态表面层之间存在显着差异。表面富集最能描述由znPE膜表面上较低分子量,较高支链含量的链引起的成分梯度。表面隔离更适合于在hmsPP共混膜表面上以单独相的形式出现EPR馏分。由齐格勒-纳塔催化的聚乙烯和茂金属催化的聚乙烯(zn / mPE)的混合物吹塑而成的薄膜及其与hmsPP的混合物再现了表面富集和表面偏析的主要特征。 znPE和zn / mPE膜之间的某些差异归因于zn / mPE的茂金属成分。 (C)2002 Wiley Periodicals,Inc. [参考:18]

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