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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Shear rheology of polymer solutions near the critical condition for elastic instability
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Shear rheology of polymer solutions near the critical condition for elastic instability

机译:接近弹性不稳定性临界条件的聚合物溶液的剪切流变学

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摘要

The use of constant viscosity, highly elastic polymer solutions, so called Boger fluids, has been remarkably successful in elucidating the behavior of polymeric materials under flowing conditions. However, the behavior of these fluids is still complicated by many different physical processes occurring within a narrow window of observation time and applied shear rate. In this study, we investigate the long-time shear behavior of an ideal Boger fluid: a well characterized, athermal, dilute, binary solution of high molecular weight polystyrene in oligomeric polystyrene. Rheological measurements show that under an applied steady shear flow, this family of polymer solutions undergoes a transient decay of normal stresses on a timescale much longer than the polymer molecule's relaxation time. Rheological and flow visualization results demonstrate that the observed phenomenon is not caused by polymer degradation, phase separation, viscous heating, or secondary flows from elastic instabilities. Although the timescale is much shorter than that associated with polymer migration in the same solutions (MacDonald and Muller, 1996), the appearance of this phenomenon only at the rates where migration has been observed suggests that it may be a prerequisite for observing migration. In addition, we note that through sufficient preshearing of the sample, the normal stress decrease suppresses the elastic instability. These results show that there is considerable uncertainty in choosing the appropriate measure of the fluid relaxation time for consistently modeling the critical condition for the elastic instability, the decay of normal stresses, and the migration of polymer species.
机译:使用恒定粘度,高弹性的聚合物溶液(称为Boger流体)在阐明聚合物材料在流动条件下的行为方面非常成功。但是,由于在观察时间和施加的剪切速率的狭窄窗口内发生的许多不同的物理过程,这些流体的行为仍然很复杂。在这项研究中,我们研究了理想的Boger流体的长期剪切行为:一种高分子量聚苯乙烯在低聚聚苯乙烯中的特征明确的无热,稀,二元溶液。流变学测量表明,在施加的恒定剪切流作用下,该聚合物溶液家族在比聚合物分子的弛豫时间更长的时间尺度上经历正应力的瞬时衰减。流变和流动可视化结果表明,观察到的现象不是由聚合物降解,相分离,粘性加热或弹性不稳定性引起的二次流动引起的。尽管时间尺度比在相同溶液中与聚合物迁移有关的时间尺度短得多(MacDonald和Muller,1996),但仅在观察到迁移率的情况下,这种现象才出现,这表明它可能是观察迁移的先决条件。另外,我们注意到,通过充分的预剪切样品,法向应力的减小抑制了弹性的不稳定性。这些结果表明,在选择适当的流体弛豫时间度量以一致地对弹性不稳定性,法向应力的衰减以及聚合物种类的迁移的临界条件进行建模时,存在很大的不确定性。

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