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Time-resolved small-angle X-ray scattering study of void fraction evolution in high-density polyethylene during stress unloading and strain recovery

机译:时间分辨小角X射线散射研究高密度聚乙烯在应力卸载和应变恢复过程中空隙率演变

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摘要

By means of time-resolved small-angle X-ray scattering, we developed an analysis methodology to assess the void volume fraction phi(v) in high-density polyethylene (HDPE) during tensile testing. The specimens were first drawn up to different imposed strains, and subsequently were subjected to stress unloading and strain recovery stages. During the loading stage, phi(v) progressively increased with the strain level, starting from a well-defined onset strain prior to the yield point. In particular, phi(v) reached a maximum of 8.75vol% for a strain of 12.5% in the case of a HDPE grade with a molecular weight of 105 000gmol(-1). Stress unloading and strain recovery caused a decrease in phi(v) attained at the end of the loading stage. For a HDPE grade with a molecular weight of 55 000gmol(-1), phi(v) was more important during the loading stage and the decrease in phi(v) was less marked during the stress unloading stage when compared to the HDPE with molecular weight of 105 000gmol(-1). The residual and reversible components of void volume fraction were revealed. (c) 2015 Society of Chemical Industry
机译:通过时间分辨的小角度X射线散射,我们开发了一种分析方法来评估拉伸试验期间高密度聚乙烯(HDPE)中的空隙体积分数phi(v)。首先将样品拉至不同的施加应变,然后进行应力卸载和应变恢复阶段。在加载阶段,phi(v)随应变水平逐渐增加,从屈服点之前明确定义的起始应变开始。特别是,对于分子量为105 000gmol(-1)的HDPE级,对于12.5%的菌株,phi(v)的最大值达到8.75vol%。应力卸载和应变恢复导致在加载阶段结束时获得的phi(v)降低。对于分子量为55 000gmol(-1)的HDPE等级,与具有分子结构的HDPE相比,在加载阶段phi(v)更为重要,而在应力卸载阶段phi(v)的下降幅度较小。重量为105 000gmol(-1)。揭示了空隙体积分数的残留和可逆成分。 (c)2015年化学工业学会

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