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Extension induced phase separation and crystallization in semidilute solutions of ultra high molecular weight polyethylene

机译:超高分子量聚乙烯新iltutute溶液中扩展诱导的相分离与结晶

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摘要

We investigate the influence of controlled uniaxial extension on various flow induced phenomena in semidilute solutions of ultra high molecular weight polyethylene. Concentrations range from 9 w% to 29 w% and the choice of solvent is paraffin oil. The start-up extensional behavior is measured at various Hencky strain rates epsilon and at two different temperatures (150 degrees C and 170 degrees C) well above the melting point. For Hencky strains epsilon > 0.9 the qualitative behavior of the samples differ significantly depending on the imposed conditions and the concentration of the samples. Overall we propose two flow scenarios: Scenario 1 - flow induced phase separation resulting in an unstable bulky filament and Scenario 2 - flow induced phase separation and crystallization resulting in a stable deformation and a smooth strongly strain hardening filament. Scenario 2 is observed only at 150 degrees C at high epsilon and high concentrations. Scenario 1, observed at both temperatures, is most pronounced at low rates and/or high concentrations. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们调查控制单轴延伸对超高分子量聚乙烯的亚浓溶液中的各种流诱导现象的影响。浓度范围为9瓦特%至29 W%和溶剂的选择是石蜡油。启动拉伸行为在不同的亨基应变速率ε和在两个不同温度(150℃和170℃)大大高于熔点测定。对于亨基应变的ε-> 0.9的样品的定性行为有所不同显著取决于施加的条件和样品的浓度。总体而言,我们提出了两种流方案:方案1 - 流动导致不稳定的笨重长丝诱导的相分离和方案2 - 流动诱导的相分离和结晶从而得到稳定的变形和光滑强烈应变硬化长丝。方案2在仅在高ε和高浓度的150摄氏度观察。方案1,在两种温度下观察到的,最明显在低速率和/或高浓度的。 (c)2017 Elsevier Ltd.保留所有权利。

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