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Blown film extrusion of LCP/PE blends using a counter-rotating die: Structure-property-process relationships.

机译:使用反向旋转模头对LCP / PE共混物进行吹膜挤出:结构-性能-工艺关系。

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摘要

Polyethylene blends (LLDPE:HDPE {dollar}approx{dollar} 2:1 by wt.) used in NASA's balloon film applications can be effectively reinforced by addition of a small amount of liquid crystalline polymer (LCP). Cast and blown PE films containing {dollar}approx{dollar} 10% LCP show enhancement in tensile modulus of {dollar}approx{dollar} 400% over that of the neat PE matrix. Anisotropy of these in-situ composites is reduced by controlling LCP molecular orientation via a counter-rotating (C/R) annular die. LCP/PE blend blown films with nearly isotropic properties are obtained. While long duration balloon (LDB) modulus requirements {dollar}(approx{dollar}1000 MPa) appear to be attainable for 10% LCP/PE blends, these blends exhibit low yield stress of 20 to 30 MPa which are far below the desired LDB target value of 100 MPa. A further study has been carried out by cold drawing these films: uniaxially drawn LCP/PE films show a remarkable improvement of {dollar}approx{dollar} 600% increase in yield stress compared to that of the base PE matrix. Final film properties are; modulus {dollar}approx{dollar} 1200 MPa and yield strength {dollar}approx{dollar} 140 MPa. These property improvements appear to be the result of self-reinforcement by the LCP morphology. Microscopic results also revealed LCP fibrils with high aspect ratios of {dollar}approx{dollar} 100 or higher in the blends.
机译:通过添加少量的液晶聚合物(LCP),可以有效地增强NASA气囊薄膜应用中使用的聚乙烯共混物(LLDPE:HDPE {美元}约{美元} 2:1(重量))。含有约10%LCP的流延和吹塑PE膜的拉伸模量比纯PE基体的拉伸模量提高了约400%。这些原位复合材料的各向异性可通过反向旋转(C / R)环形模具控制LCP分子取向来降低。获得了具有几乎各向同性的LCP / PE共混吹塑薄膜。对于10%LCP / PE共混物,似乎可以达到长期球囊(LDB)模量要求{美元}(约{dollar}} 1000 MPa,但这些共混物的屈服应力低至20至30 MPa,远低于所需的LDB目标值为100 MPa。通过对这些薄膜进行冷拉伸已进行了进一步的研究:单轴拉伸的LCP / PE薄膜与屈服应力相比,基体PE基体的屈服应力明显提高了约600%。最终的薄膜性能为;模量{美元}约{美元}为1200 MPa,屈服强度{美元}约{美元}为140 MPa。这些性能改善似乎是LCP形态自我增强的结果。显微镜结果还表明,在共混物中,LCP原纤维的长径比约为{100}或更高,约为{100}。

著录项

  • 作者

    Chinsirikul, Wannee.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Materials Science.; Plastics Technology.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;整形外科学(修复外科学);
  • 关键词

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