Deformation, Fracture, and Friction Processes

F. Louchet
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Abstract

The main mechanical and physical quantities and concepts ruling deformation, fracture, and friction processes are recalled, with particular attention paid to the simplicity of the analysis, but without betraying the scientific validity of the arguments. We particularly discuss the difference between between elastic and plastic deformation, and quasistatic and dynamic loadings, essential in avalanche triggering mechanisms. The physical origin of Griffith’s rupture criterion that rules both fracture nucleation and propagation, and the transition between brittle and ductile failure processes, is thoroughly discussed. We also explain the physical meaning of the classical Coulomb’s friction law, showing why it can hardly apply to a non-conventional porous, brittle, and healable solid like snow.
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变形、断裂和摩擦过程
回顾了决定变形、断裂和摩擦过程的主要力学和物理量和概念,特别注意分析的简单性,但不背叛论点的科学有效性。我们特别讨论了在雪崩触发机制中必不可少的弹性和塑性变形以及准静态和动态加载之间的区别。深入讨论了格里菲斯断裂准则的物理起源,该准则规定了断裂的形核和扩展,以及脆性和韧性破坏过程之间的过渡。我们还解释了经典库仑摩擦定律的物理意义,说明了为什么它很难适用于像雪这样的非常规多孔、易碎和可愈合的固体。
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Deformation, Fracture, and Friction Processes Snow, an Intriguing, Complex, and Changeable Solid Slab Avalanche Modeling Snow and Avalanches in a Climate Warming Context Summary and Conclusion
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