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首页> 外文期刊>Journal of Rheology >FIRST AND SECOND NORMAL STRESS DIFFERENCE RELAXATION IN REVERSING DOUBLE-STEP STRAIN FLOWS
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FIRST AND SECOND NORMAL STRESS DIFFERENCE RELAXATION IN REVERSING DOUBLE-STEP STRAIN FLOWS

机译:逆转双层应变流动时的第一和第二正常应力差异弛豫

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摘要

Reversing double-step strains provide a severe test of constitutive equations and have often been used to test the Doi-Edwards (DE) model with and without the independent alignment approximation. We report measurements of the full stress tensor in a concentrated monodisperse polystyrene solution subjected to reversing double-step strains using flow birefringence. Shear stress and first normal stress difference results agree with previous studies. In flows where the second strain is half the magnitude of the first (''specialized type-B''), certain rheological models predict that normal stresses should be independent of time between strains (t(1)), and equal to those measured in single-step strain. Both first and second normal stress differences follow this behavior at long times, but deviations are found at short times, where chain retraction is occurring. In flows with equal and opposite step strains (''type-C''), the ratio N-1/sigma is found to be equal to the strain. In both of these flows, the DE model predicts the normal stress ratio -N-2/N-1 to be independent of t(1). In specialized type-B flows, the experimental normal stress ratio is nearly independent of t(1), while in type-C flows the ratio depends strongly on t(1) and is found to be substantially larger than that predicted by the DE model or observed in single-step strains. DE calculations for more general flow protocols predict that the normal stress ratio may depend on t(1) and on the time following the second deformation. Experiments show qualitative agreement with both forms of the DE model for these other flows, where the major influence of the independent alignment approximation is on the magnitude of the predicted normal stress ratio. (C) 1996 Society of Rheology. [References: 17]
机译:逆转双步菌株提供了对本构方程的严重测试,并且通常用于测试与无独立对准近似的DOI-Edwards(DE)模型。我们通过流动双折射报告经受逆转双层菌株的浓缩单分散聚苯乙烯溶液中的全应力张量的测量。剪切应力和第一个正常应力差异结果与之前的研究一致。在第二个应变为第一级的一半的流动(''专用Type-B'')中,某些流变模型预测,正常应力应与菌株(T(1))之间的时间无关,并且等于测量的那些在单步菌株中。第一和第二正常应力差异均在长时间遵循这种行为,但在短时间内发现偏差,其中连锁缩回发生。在具有相等和相反的步骤菌株的流动中('型-C''),发现比率N-1 / Sigma等于应变。在这两种流动中,DE模型预测了正常应力比-N-2 / N-1与T(1)无关。在专业的B型流动中,实验正常应力比几乎与T(1)无关,而在C类型的流动中,该比率在T(1)上强烈取决于T(1),并且发现基本上大于DE模型预测的比率或在单步菌株中观察到。更一般的流动协议的DE计算预测正常应力比可以取决于T(1)和在第二变形之后的时间。实验显示与这些其他流动的两种形式的定性协议,其中独立对准近似的主要影响是预测的正常应力比的大小。 (c)1996年流变学会。 [参考:17]

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