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The dependence time of melting behavior on rheological aspects of disentangled polymer melt: a route to the heterogeneous melt

机译:熔融行为对解缠聚合物熔体流变学特性的依赖时间:通向非均质熔体的途径

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摘要

To enhance the time scale for entanglement recovery, ultra high molecular weight polyethylene (UHMWPE) with a molecular weight of approximately 9.2x10(6) gmol(-1) has been used. Rheological experiments were performed to monitor the melting kinetics of the disentangled melt prepared via solution casting. The successive frequency and strain sweep experiments showed that the processes of recovery of entanglements were quite clear in our experiments. It was observed that the entangled state influenced the border of the linear viscoelastic regime and the non-linear region. Complete re-entanglement time obtained by dynamics time-sweep experiment changed with the entanglement density and became unexpectedly longer in the disentangled sample. Meanwhile, the time-sweep experiments performed in the disentangled melt displayed that the gradual increasing of storage modulus in the initial has lagged behind and the time required for the modulus build up was relevant to the heating rate on melting. We suggested that an unusual behavior of melting kinetics of the disentangled sample caused the resultant heterogeneous melt having differences in local chain mobility, and hence an "immediate" loss in the disentangled state did not occur. Therefore, the level-off storage modulus on the onset of the following time-sweep experiment may be associated with the mixing of the distinguishable state of the heterogeneous distribution on melting.
机译:为了提高纠缠恢复的时间尺度,已使用分子量约为9.2x10(6)gmol(-1)的超高分子量聚乙烯(UHMWPE)。进行流变实验以监测通过溶液流延制备的解缠结的熔体的熔融动力学。连续的频率和应变扫描实验表明,缠结的恢复过程在我们的实验中非常清楚。观察到纠缠状态影响线性粘弹性状态和非线性区域的边界。通过动力学时间扫描实验获得的完全重新纠缠时间随纠缠密度的变化而变化,并且在未纠缠样品中意外地变长了。同时,在解缠结的熔体上进行的时间扫描实验表明,初始储能模量的逐渐增加已经滞后,并且模量建立所需的时间与熔化时的加热速率有关。我们认为,解缠结样品的熔体动力学异常行为会导致所得的异质熔体在局部链迁移率方面存在差异,因此在解缠结状态下不会发生“立即”损失。因此,随后的时间扫描实验开始时的水平储能模量可能与熔化时异质分布的可分辨状态的混合相关。

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