Mohagheghi Mouge, Khomami Bamin
Material Research and Innovation Laboratory, Department of Chemical and Biomolecular Engineering, The University Tennessee, Knoxville, Tennessee 37996, USA.
Phys Rev E. 2016 Jun;93(6):062606. doi: 10.1103/PhysRevE.93.062606. Epub 2016 Jun 13.
Dissipative particle dynamics simulations of polymeric melts in a start-up of shear flow as a function of ramp time to its steady state value is studied. Herein, we report the molecular findings showing the effect of ramp time on the formation of shear banded structures and chain relaxation behavior. Specifically, it is shown that shear banding emerges at a rapid start-up; however, homogeneous shear prevails when the deformation rate ramp time is sufficiently slow. This finding is in full consistency with prior continuum level linear stability analysis of shear banding in start-up of shear flows as well as experimental observations of entangled DNA and polymer solutions. Further, it has been revealed that the ratio of the longest chain orientation relaxation time to that of the time for the imposed deformation rate to reach its steady state value plays a central role in determining whether local strain inhomogeneities that lead to the formation of shear banded flow structures are created. In addition, we have shown that the gradient of the number of entanglements along the velocity gradient direction should reach a critical value for the creation of localized strain inhomogeneity. Moreover, the relation between the local process leading to shear banded flows and the relaxation mechanism of the chain is discussed. Overall, a molecular picture for the interrelation between the longest chain orientation and stress relaxation time, local inhomogeneities, and shear banding has been proposed and corroborated with extensive analysis.
研究了聚合物熔体在剪切流启动过程中作为斜坡时间函数向其稳态值变化的耗散粒子动力学模拟。在此,我们报告分子研究结果,展示了斜坡时间对剪切带结构形成和链松弛行为的影响。具体而言,结果表明在快速启动时会出现剪切带;然而,当变形速率斜坡时间足够慢时,均匀剪切占主导。这一发现与先前对剪切流启动过程中剪切带的连续介质水平线性稳定性分析以及对缠结DNA和聚合物溶液的实验观察完全一致。此外,已经揭示,最长链取向松弛时间与施加的变形速率达到其稳态值所需时间的比值在确定是否会产生导致剪切带流动结构形成的局部应变不均匀性方面起着核心作用。另外,我们已经表明,沿着速度梯度方向的缠结数梯度应达到一个临界值,以产生局部应变不均匀性。此外,还讨论了导致剪切带流动的局部过程与链的松弛机制之间的关系。总体而言,已经提出了最长链取向与应力松弛时间、局部不均匀性和剪切带之间相互关系的分子图景,并通过广泛分析得到了证实。