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Unstable cracks trigger asymptotic rupture modes in bimaterial friction

机译:不稳定的裂缝引发了双层摩擦中的渐近破裂模式

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摘要

The rupture of the interface joining two materials under frictional contact controls their macroscopic sliding. Interface rupture dynamics depend markedly on the mechanical properties of the bulk materials that bound the frictional interface. When the materials are similar, recent experimental and theoretical work has shown that shear cracks described by Linear Elastic Fracture Mechanics (LEFM) quantitatively describe the rupture of frictional interfaces. When the elastic properties of the two materials are dissimilar, many new effects take place that result from bimaterial coupling: the normal stress at the interface is elastodynamically coupled to local slip rates. At low rupture velocities, bimaterial coupling is not very significant and interface rupture is governed by 'bimaterial cracks' that are described well by LEFM. As rupture velocities increase, we experimentally and theoretically show how bimaterial cracks become unstable at a subsonic critical rupture velocity, c_T. When the rupture direction opposes the direction of applied shear in the softer material, we show that c_T is the subsonic limiting velocity. When ruptures propagate in the direction of applied shear in the softer material, we demonstrate that c_T provides an explanation for how and when slip pulses (new rupture modes characterized by spatially localized slip) are generated.
机译:在摩擦接触下加入两种材料的界面的破裂控制其宏观滑动。接口破裂动力学显着依赖于结合摩擦界面的散装材料的机械性能。当材料类似时,最近的实验和理论上的作用表明,线性弹性断裂力学(lefm)描述的剪切裂缝定量描述了摩擦界面的破裂。当两种材料的弹性性质不一样,许多新效应发生由双材料耦合导致的:界面处的正常应力被弹性动力地耦合到局部滑移率。在低破裂速度下,双材料耦合不是非常显着的,并且接口破裂由右甲纤维描述的“双材料裂缝”控制。由于破裂速度增加,我们在实验和理论上展示了双材料裂缝在括号临界破裂速度,C_T时如何变得不稳定。当破裂方向与较软的材料中施加剪切的方向相反时,我们表明C_T是亚源极限速度。当断裂在更柔软的材料中施加剪切的方向上传播时,我们证明C_T提供了对滑脉冲的和当产生的滑脉冲(以空间局部滑动的新的破裂模式)提供了解释。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2021年第4期|104330.1-104330.18|共18页
  • 作者单位

    The Racah Institute of Physics The Hebrew University of Jerusalem Jerusalem 91904 Israel;

    Institute for Building Materials ETH Zurich 8093 Zuerich Switzerland;

    The Racah Institute of Physics The Hebrew University of Jerusalem Jerusalem 91904 Israel Universite de Lyon Ecole Normale Superieure de Lyon Universite Claude Bernard CNRS Laboratoire de Physique F-69342 Lyon France;

    Departamento de Fisica Facultad de Ciencias Fisicas y Matematicas Universidad de Chile Santiago 8370449 Chile;

    The Racah Institute of Physics The Hebrew University of Jerusalem Jerusalem 91904 Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Friction; Fracture; Bimaterial rupture; Earthquake dynamics;

    机译:摩擦;断裂;双肢破裂;地震动力学;

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