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Environmental stress cracking behavior of short‐chain branch polyethylenes in Igepal solution under a constant load

机译:Igepal溶液中短链支链聚乙烯在恒定载荷下的环境应力开裂行为

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AbstractAn investigation of the influence of branch length and crystallinity on environmental stress cracking properties of short‐chain branch polyethylenes (SBPEs) in Igepal solution is reported. The precise value of Igepal transition time (ITT) and difference between the failure process of SBPEs in air and in Igepal solution were determined by comparing their plots of notch opening displacements vs. time in air and in Igepal solution. Igepal transition time can only be found as the failure time (tfI) is greater than the critical time Igepal required to “accelerate” the fracture of SBPEs in Igepal solution. Prior to ITT, time dependence of notch opening displacements and fracture surfaces of samples in Igepal solution were similar to those in air. In contrast, obvious voids appeared in the base of craze and crazelike structures containing clear voids were found on the fracture remnants of samples withtfIlonger than their ITTs. The value of ITT andtfIwere found to increase significantly for samples associated with higher crystallinity. However, no significant difference in value of ITT was found for samples with the same crystallinity, tie‐molecule density, molecular weight, branch frequency, but different branch length. Finally, environmental stress cracking resistance (ESCR) andtfIof SBPEs in Igepal solution increased dramatically as the short‐chain branch length increased. This dramatic improvement in environmental stress cracking properties with short‐chain branch length is attributed to the increasing sliding resistance of the polymer chains through the crystal and through the entanglement in amorphous region at time before and after ITT. © 1994 John Wil
机译:摘要研究了支链长度和结晶度对Igepal溶液中短链支链聚乙烯(SBPEs)环境应力开裂性能的影响。通过比较SBPEs在空气中和Igepal溶液中的缺口打开位移与时间的关系图,确定了Igepal转变时间(ITT)的精确值以及SBPE在空气中和Igepal溶液中的破坏过程之间的差异。只有当失效时间(tfI)大于Igepal解决方案中SBPE断裂所需的临界时间时,才能找到Igepal转变时间。在ITT之前,Igepal溶液中样品的缺口开口位移和断裂表面的时间依赖性与空气中相似。相反,在裂隙底部出现明显的空隙,在比其ITTs更长的样品的裂缝残余物上发现含有透明空隙的裂隙状结构。发现与较高结晶度相关的样品的ITT和tfI值显着增加。然而,对于结晶度、连接分子密度、分子量、支链频率相同但支链长度不同的样品,ITT值没有显著差异。最后,随着短链支链长度的增加,Igepal溶液中的抗环境应力开裂性(ESCR)和tfIof SBPEs显著增加。这种具有短链支线长度的环境应力开裂性能的显着改善归因于聚合物链在ITT前后通过晶体和通过非晶区域纠缠的滑动阻力的增加。© 1994 约翰·威尔

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