Xu Qin, Wilen Lawrence A, Jensen Katharine E, Style Robert W, Dufresne Eric R
Laboratory of Soft and Living Materials, ETH Zurich, 8093 Zurich, Switzerland.
Department of Physics, The Hong Kong University of Science and Technology, Hong Kong, China.
Phys Rev Lett. 2020 Dec 4;125(23):238002. doi: 10.1103/PhysRevLett.125.238002.
Understanding surface mechanics of soft solids, such as soft polymeric gels, is crucial in many engineering processes, such as dynamic wetting and adhesive failure. In these situations, a combination of capillary and elastic forces drives the motion, which is balanced by dissipative mechanisms to determine the rate. While shear rheology (i.e., viscoelasticity) has long been assumed to dominate the dissipation, recent works have suggested that compressibility effects (i.e., poroelasticity) could play roles in swollen networks. We use fast interferometric imaging to quantify the relaxation of surface deformations due to a displaced contact line. By systematically measuring the profiles at different time and length scales, we experimentally observe a crossover from viscoelastic to poroelastic surface relaxations.
理解软固体(如软聚合物凝胶)的表面力学在许多工程过程中至关重要,如动态润湿和粘附失效。在这些情况下,毛细力和弹性力共同驱动运动,运动由耗散机制平衡以确定速率。虽然长期以来人们一直认为剪切流变学(即粘弹性)主导耗散,但最近的研究表明,压缩性效应(即多孔弹性)可能在溶胀网络中起作用。我们使用快速干涉成像来量化由于接触线位移引起的表面变形的弛豫。通过系统地测量不同时间和长度尺度下的轮廓,我们通过实验观察到从粘弹性表面弛豫到多孔弹性表面弛豫的转变。