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Shear small-angle light scattering studies of shear-induced concentration fluctuations and steady state viscoelastic properties

机译:剪切引起的浓度波动和稳态粘弹性特性的剪切小角光散射研究

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摘要

We aimed at elucidating the influence of shear-induced structures (shear-enhanced concentration fluctuations and/or shear-induced phase separation), as observed by rheo-optical methods with small-angle light scattering under shear flow (shear-SALS) and shear-microscopy, on viscoelastic properties in semidilute polystyrene (PS) solutions of 6.0 wt % concentration using dioctyl phthalate (DOP) as a Theta solvent and tricresyl phosphate (TCP) as a good solvent. In order to quantify the effects of the shear-induced structures, we conducted a numerical analysis of rheological properties in a homogeneous solution based on the constitutive equation developed by Kaye-Bernstein, Kearsley, and Zapas (K-BKZ). In the low-to-intermediate shear rate gamma-dot region between tauw−1 and taue−1, where tauw and taue are, respectively, terminal relaxation time and the relaxation time for chain stretching, the steady state rheological properties, such as shear stress sigma and the first normal stress difference N1, for the PS/DOP and PS/TCP solutions are found to be almost same and also well predicted by the K-BKZ equation, in spite of the fact that there is a significant difference in the shear-induced structures as observed by shear-SALS and shear-microscopy. This implies that the contribution of the concentration fluctuations built up by shear flow to the rheological properties seems very small in this gamma-dot region. On the other hand, once gamma-dot exceeds taue−1, sigma and N1 for both PS/DOP and PS/TCP start to deviate from the predicted values. Moreover, when gamma-dot further increases and becomes higher than gamma-dota, DOP (sufficiently higher than taue−1), above which rheological and scattering anomalies are observed for PS/DOP, sigma and N1 for PS/DOP and PS/TCP are significantly larger than those predicted by K-BKZ. Particularly, a steep increase of sigma and N1 for PS/DOP above gamma-dota, DOP is attributed to an excess free energy stored in the system via the deformation of interface of well-defined domains, which are aligned into the stringlike structure developed parallel to the flow axis, and stretching of the chains connecting the domains in the stringlike structures. Thus, we advocate that the effect of shear-induced structures should be well considered on the behavior of sigma and N1 at the high gamma-dot region above taue−1 in semidilute polymer solutions.
机译:我们的目的是阐明通过流变光学方法在剪切流(剪切-SALS)和剪切作用下具有小角度光散射的流变光学方法观察到的剪切诱导结构(剪切增强的浓度波动和/或剪切诱导的相分离)的影响。显微镜,使用邻苯二甲酸二辛酯(DOP)作为Theta溶剂和磷酸三甲苯酯(TCP)作为良溶剂,在6.0 wt%浓度的半稀释聚苯乙烯(PS)溶液中进行粘弹性测试。为了量化剪切诱导结构的影响,我们基于Kaye-Bernstein,Kearsley和Zapas(K-BKZ)提出的本构方程,在均质溶液中进行了流变特性的数值分析。在tauw-1和taue-1之间的中低剪切速率的伽玛点区域中,其中tauw和taue分别是末端松弛时间和链拉伸的松弛时间,稳态流变特性(例如剪切)尽管PS / DOP和PS / TCP解决方案的应力sigma和第一法向应力差N1几乎相同,但也可以通过K-BKZ方程很好地预测,尽管通过剪切-SALS和剪切显微镜观察到的剪切诱导结构。这意味着在该伽玛点区域中,由剪切流建立的浓度波动对流变性质的贡献似乎很小。另一方面,一旦gamma点超过taue-1,则PS / DOP和PS / TCP的sigma和N1开始偏离预测值。此外,当伽玛点进一步增加并变得高于伽玛点时,DOP(足够高于taue-1),在此之上,PS / DOP观察到流变和散射异常,PS / DOP和PS / TCP观察到sigma和N1。比K-BKZ预测的要大得多。特别是,PS / DOP的σ和N1急剧增加,超过了γ-dota,DOP归因于通过定义明确的域的界面变形而存储在系统中的多余自由能,这些域排列成平行形成的线状结构到流轴,并拉伸连接线状结构域的链。因此,我们主张应在半稀聚合物溶液中,在taue-1上方高γ点区域的sigma和N1的行为上充分考虑剪切诱导结构的影响。

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