复杂流体中边缘断裂与剪切带的相互作用

E. J. Hemingway, S. Fielding
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引用次数: 11

摘要

我们通过在Johnson-Segalman模型和Giesekus模型这两种本构模型中进行详细的模拟研究,从理论上探讨了复杂流体中剪切带和边缘断裂之间的相互作用。我们考虑单独的参数制度,其中潜在的本构曲线是单调的和非单调的,这样的散装流动(在没有任何边缘效应)分别是均匀的和剪切带状。边缘扰动和大块(或准大块)剪切带水平的相图被映射为流体-空气界面表面张力的函数,该界面与流室壁接触的润湿角,以及施加的剪切速率。特别是,我们更详细地探讨了海明威等人(2018)最近宣布的基本结果:边缘断裂的前体可以诱导准块状剪切带。我们还评估了剪切带可能导致边缘断裂的分析预测,Skorski和Olmsted(2011)。尽管这项研究具有显著的早期洞察力,但该研究对“基态”的性质做出了一些强有力的假设,我们使用直接数值模拟来检验这些假设。剪切带状带会导致边缘断裂的基本预测仍然有效,但在质性上改变了相界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interplay of edge fracture and shear banding in complex fluids
We explore theoretically the interplay between shear banding and edge fracture in complex fluids, by performing a detailed simulation study within two constitutive models: the Johnson-Segalman model and the Giesekus model. We consider separately parameter regimes in which the underlying constitutive curve is monotonic and non-monotonic, such that the bulk flow (in the absence of any edge effects) is respectively homogeneous and shear banded. Phase diagrams of the levels of edge disturbance and of bulk (or quasi-bulk) shear banding are mapped as a function of the surface tension of the fluid-air interface, the wetting angle where this interface meets the walls of the flow cell, and the imposed shear rate. In particular, we explore in more detail the basic result recently announced in Hemingway et al. (2018): that precursors to edge fracture can induce quasi-bulk shear banding. We also appraise analytical predictions that shear banding can induce edge fracture, Skorski and Olmsted (2011). Although a study of remarkable early insight, that study made some strong assumptions about the nature of the "base state", which we examine using direct numerical simulation. The basic prediction that shear banding can cause edge fracture remains valid, but with qualitatively modified phase boundaries.
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