论文标题

弹性板的线圈 - 拉伸样过渡

Coil-stretch-like transition of elastic sheets in extensional flows

论文作者

Yu, Yijiang, Graham, Michael D.

论文摘要

溶解在流体中并暴露于延伸流的长线性聚合物的构象是表现出“线圈拉伸”过渡的众所周知,对于足够长的链条可能会导致双链。目前的工作报告了计算,表明在薄弹性板的动力学中出现了类似的“紧凑拉伸”过渡。名义上的圆形,正方形或矩形形状的片段在平面和双轴流中使用有限的元素方法进行板构象和正规化的stokeslet方法,用于流体流动。如果将新霍克构构模型用于板弹性,则一旦超过毛细血管数,板将无界的延伸速率(以非限度为特征)伸展。以YEOH模型为代表的非线性弹性会阻止拉伸,一旦超过临界毛细管数,导致高度伸展的稳态。对于所有形状以及平面和双轴延伸,都存在一个参数状态,其中较弱的拉伸(紧凑)和强烈拉伸的状态都可以根据初始条件找到。 IE。此参数制度显示双重性。与长链聚合物情况一样,双态行为源于纸的遥远元素之间的流体动力相互作用,并且是否通过将Brinkman模型用于流体运动来人为筛选这些相互作用。虽然床单可以瞬时显示皱纹的形状,但平面和双轴扩展的所有最终形状都是平面。

The conformation of a long linear polymer dissolved in fluid and exposed to an extensional flow is well-known to exhibit a "coil-stretch" transition, which for sufficiently long chains can lead to bistability. The present work reports computations indicating that an analogous "compact-stretched" transition arises in the dynamics of a thin elastic sheet. Sheets of nominally circular, square or rectangular shape are simulated in planar and biaxial flows using a finite element method for the sheet conformations and a regularized Stokeslet method for the fluid flow. If a neo-Hookean constitutive model is used for the sheet elasticity, the sheets will stretch without bound once a critical extension rate, as characterized nondimensionally by a capillary number, is exceeded. Nonlinear elasticity, represented with the Yeoh model, arrests the stretching, leading to a highly-stretched steady state once the critical capillary number is exceeded. For all shapes and in both planar and biaxial extension, a parameter regime exists in which both weakly stretched (compact) and strongly stretched states can be found, depending on initial conditions. I.e. this parameter regime displays bistability. As in the long-chain polymer case, the bistable behavior arises from the hydrodynamic interaction between distant elements of the sheet, and vanishes if these interactions are artificially screened by use of a Brinkman model for the fluid motion. While the sheets can transiently display wrinkled shapes, all final shapes in planar and biaxial extension are planar.

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