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A viewpoint on environmental contributions to fatigue crack growth

机译:关于环境对疲劳裂纹扩展的贡献的观点

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Fatigue crack growth behaviour is examined using the Unified Damage Approach developed by the authors since 1994. The approach is based on the understanding that a fatigue damage requires two loading parameters; a requirement manifesting in terms of two fracture mechanics parameters: maximum stress intensity factor K_(max) and a stress amplitude ΔK. K_(max) governs the breakage of crack tip bonds allowing for crack extension and ΔK controls the extent of cycle damage needed ahead of the crack tip. The overall changes in crack growth depend on several factors like microstructure, deformation mode and its properties and environment. The Unified Damage Approach describes these closely related changes in the damage mechanisms due to synergistic effects of mechanical and environmental driving forces. Crack growth trajectory maps developed using the Unified Damage Approach summarises these changes in mechanisms that occur with increasing crack growth rate or stress intensity.
机译:自1994年以来,作者一直使用统一损伤方法研究疲劳裂纹的扩展行为。该方法基于以下认识:疲劳损伤需要两个载荷参数;即,疲劳损伤需要两个载荷参数。这个要求体现在两个断裂力学参数上:最大应力强度因子K_(max)和应力振幅ΔK。 K_(max)控制裂纹尖端粘结的断裂,从而允许裂纹扩展,而ΔK控制裂纹尖端之前所需的循环损伤程度。裂纹扩展的总体变化取决于几个因素,例如微观结构,变形模式及其性质和环境。统一损坏法描述了由于机械和环境驱动力的协同作用而导致的损坏机制中与这些密切相关的变化。使用统一损伤方法开发的裂纹扩展轨迹图总结了随着裂纹扩展速率或应力强度的增加而发生的机理变化。

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