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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Rheological Indicators for Environmental Stress Cracking Resistance of Polyethylene
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Rheological Indicators for Environmental Stress Cracking Resistance of Polyethylene

机译:聚乙烯抗环境应力开裂性的流变指标

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摘要

Most studies on environmental stress cracking resistance (ESCR) of polymers have focused on performing mechanical tests in the solid state. In this work, investigations in the melt state were carried out, to identify potential melt indicators for a relative measure of ESCR. A normalized characteristic relaxation time (lambda(N)), obtained from dynamic shear experiments, was established as a valid measure of ESCR of linear low density polyethylene, where a large content of short chain branches is present. In addition, the melt strain hardening coefficient (MSHC), obtained from extensional rheological methodologies, was found to be another potential and reliable indicator of ESCR. An inverse correlation between MSHC and ESCR was observed, indicating an inverse relationship between ESCR and chain extensibility in the melt. Furthermore, a new factor called "melt hardening stiffness (mHS)" was developed from the slope of a stress vs. Hencky strain obtained from a Sentmanat extensional rheometer. mHS was found to be another promising indicator of ESCR obtained from rheological studies conducted in this work.
机译:关于聚合物的耐环境应力开裂性(ESCR)的大多数研究都集中于在固态下进行机械测试。在这项工作中,进行了熔体状态的研究,以确定潜在的熔体指示剂,以作为ESCR的相对量度。通过动态剪切实验获得的归一化特征弛豫时间(lambda(N))被确定为线性低密度聚乙烯(其中存在大量短链分支)的ESCR的有效度量。此外,从拉伸流变学方法获得的熔体应变硬化系数(MSHC)被认为是ESCR的另一个潜在且可靠的指标。观察到MSHC与ESCR之间呈反比关系,表明ESCR与熔体中链的延伸性之间呈反比关系。此外,从从Sentmanat延伸流变仪获得的应力与Hencky应变的斜率,得出了一个称为“熔体硬化刚度(mHS)”的新因子。从这项工作中进行的流变学研究发现,mHS是ESCR的另一个有希望的指标。

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