Fracture toughness of rough and frictional cracks emanating from a re-entrant corner

A. Carpinteri, A. Spagnoli, M. Terzano, S. Vantadori
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引用次数: 5

Abstract

In mixed-mode conditions, the competing contribution of the different stress intensity factors predicts fracture initiation load as well as crack propagation direction. Commonly, mixed-mode fracture resistance is based on the assumption of smooth and frictionless cracks. However, the effect of friction and roughness cannot be neglected when mixed mode loading occurs, as in the case of a crack emanating from a re-entrant corner. In this paper, the effect of friction and roughness is evaluated through a simple saw-tooth model in a three-quarter-infinite plane (corresponding to a 90 degree re-entrant corner). The crack surfaces are assumed to be globally smooth, and roughness and friction are incorporated through a constitutive law between opposite crack surfaces. The solution is found using the distributed dislocation method, and an iterative algorithm is needed due to the non-linearity of the model. The effect of friction and roughness angle is discussed for a simple case.
粗糙裂纹和摩擦裂纹的断裂韧性
在混合模式条件下,不同应力强度因子的竞争贡献预测了断裂起裂载荷和裂纹扩展方向。通常,混合模式断裂抗力是基于光滑无摩擦裂纹的假设。然而,当发生混合模式加载时,摩擦和粗糙度的影响不能被忽视,例如在裂纹从再入角产生的情况下。在本文中,通过一个简单的锯齿模型,在四分之三无限平面(对应于一个90度的返入角)上评估了摩擦和粗糙度的影响。假设裂纹表面是全局光滑的,并且通过相对裂纹表面之间的本构律将粗糙度和摩擦结合起来。该方法采用分布位错法求解,由于模型的非线性,需要迭代求解。通过一个简单的算例,讨论了摩擦和粗糙度角的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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