Persson B N J
PGI-1, FZ Jülich, Germany.
J Chem Phys. 2016 Dec 21;145(23):234703. doi: 10.1063/1.4972067.
I study a simple contact mechanics model for a poroelastic, fluid-filled solid squeezed against a rigid, randomly rough substrate. I study how the fluid is squeezed out from the interface, and how the area of contact, and the average interfacial separation, change with time. I present numerical results relevant for a human cartilage. I show that for a fluid filled poroelastic solid the probability of cavitation (and the related wear as the cavities implode), and dynamical scraping (defined below and in Hutt and Persson, J. Chem. Phys. 144, 124903 (2016)), may be suppressed by fluid flow from the poroelastic solid into the (roughness induced) interfacial gap between the solids.
我研究了一个简单的接触力学模型,该模型用于描述一个充满流体的多孔弹性固体挤压在一个刚性的、表面随机粗糙的基底上的情况。我研究了流体如何从界面被挤出,以及接触面积和平均界面间距如何随时间变化。我给出了与人体软骨相关的数值结果。我表明,对于充满流体的多孔弹性固体,空化的概率(以及随着空化泡内爆产生的相关磨损)和动态刮擦(定义见下文以及Hutt和Persson所著的《化学物理杂志》144, 124903 (2016)),可能会因流体从多孔弹性固体流入固体之间(由粗糙度引起的)界面间隙而受到抑制。