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Necking after extensional filament stretching of complex fluids and soft solids.

机译:复杂流体和软固体的拉伸细丝拉伸后的颈缩。

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摘要

We perform linear stability analysis and nonlinear slender filament simulations of extensional necking in complex fluids and soft solids, during the stress relaxation process following an interrupted strain ramp. We start by deriving analytical criteria for necking within a highly simplified and generalised scalar constitutive model. Within this, we find two different possible modes of necking: one associated with an upward curvature in the stress relaxation function on a log-linear plot, and another related to a carefully defined ‘elastic’ derivative of the tensile force with respect to an imagined sudden strain increment. We showed these two criteria to agree fully with simulations of the Oldroyd B and Giesekus models of polymeric solutions, and with the Rolie-Poly model of more concentrated polymeric solutions and melts, without polymer chain stretch. With chain stretch included, we find a slightly more complicated analytical criterion for necking during the stress relaxation, although with key ingredients that closely mirror counterpart ingredients of the simpler criteria obtained within the scalar model. We show this criterion to agree fully with slender filament simulations of the Rolie-Poly model with chain stretch, and with the scenario discussed by the Copenhagen group in Refs.[A Lyhne, H. K Rasmussen, and O Hassager. Simulation of elastic rupture in extension of entangled monodisperse polymer melts. Physical Review Letters, 102:1–4, 2009., H. K Rasmussen and K Yu. Spontaneous breakup of extended monodisperse polymer melts. Physical Review Letters, 107(12):1–4, 2011]. In particular, we see delayed necking after strain ramps with an accumulated strain exceeding View the MathML source for ramp rates exceeding the inverse chain stretch relaxation timescale. We discuss finally an analogy between this delayed necking following an interrupted extensional strain ramp and delayed shear banding following an interrupted shear strain ramp [R.L. Moorcroft and S.M. Fielding. Shear banding in time-dependent ows of polymers and wormlike micelles. Journal of Rheology, 58(1):103, 2013]. This work provides the counterpart, for interrupted extensional strain ramps, to earlier papers giving criteria for necking in the protocols of constant imposed Hencky strain rate [D.M. Hoyle and S.M. Fielding. Criteria for extensional necking instability in complex uids and soft solids. Part I: Imposed Hencky strain rate protocol. Journal of Rhe- ology, 60(6):1347–1375, 2016.] and of constant imposed tensile stress or constant imposed tensile force [D.M. Hoyle and S.M. Fielding. Criteria for extensional necking instability in complex uids and soft solids. Part II: Imposed tensile stress and force protocols. Journal of Rheology, 60(6):1377–1397, 2016.].
机译:在中断的应变斜坡后的应力松弛过程中,我们对复杂流体和软固体中的延伸颈缩进行了线性稳定性分析和非线性细长细丝模拟。我们首先在高度简化的广义标量本构模型中得出颈缩的分析标准。在此范围内,我们发现两种不同的可能的颈缩模式:一种与对数线性图上的应力松弛函数的向上弯曲相关,另一种与精心定义的拉伸力相对于想象的“弹性”导数有关应变突然增加。我们显示了这两个标准,它们与聚合物溶液的Oldroyd B和Giesekus模型的模拟完全吻合,并且与更高浓度的聚合物溶液和熔体的Rolie-Poly模型完全吻合,没有聚合物链的拉伸。包括链条拉伸,我们发现应力松弛过程中颈缩的分析标准稍微复杂一些,尽管关键成分与标量模型中获得的较简单标准的对应成分非常相似。我们证明了该标准与带有链拉伸的Rolie-Poly模型的细丝模拟以及哥本哈根小组在参考文献中讨论的情况完全一致[A Lyhne,H.K Rasmussen和O Hassager。缠结单分散聚合物熔体延伸过程中弹性断裂的模拟。 《物理评论快报》,2009年第102期:1-4。,H。K. Rasmussen和K Yu。扩展的单分散聚合物熔体自发破裂。物理评论快报,2011年,第107(12):1-4页]。尤其是,我们看到在应变斜坡之后出现颈缩延迟,累积的应变超过。斜坡速率超过逆链拉伸弛豫时间尺度。最后,我们讨论了在拉伸应变斜坡中断之后的延迟颈缩和在剪切应变斜坡中断之后的延迟剪切带之间的类比。 Moorcroft和S.M.守卫。聚合物和蠕虫状胶束的时间依赖性流中的剪切带。流变学杂志,58(1):103,2013]。这项工作为中断的延伸应变斜线提供了对应的解决方案,与早期论文为恒定施加的Hencky应变速率规程中的颈缩标准提供了标准。霍伊尔和S.M.守卫。复杂流体和软固体中延伸颈缩不稳定性的标准。第一部分:强加的Hencky应变速率协议。 Journal of Rheology,60(6):1347-1375,2016。]且施加恒定的拉伸应力或恒定施加的拉伸力[D.M.霍伊尔和S.M.守卫。复杂流体和软固体中延伸颈缩不稳定性的标准。第二部分:施加的拉应力和力协议。流变学杂志,60(6):1377–1397,2016。]。

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    Hoyle, D.M.; Fielding, S.M.;

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