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首页> 外文期刊>Fatigue & fracture of engineering materials and structures >Fatigue crack growth simulation of interacting multiple cracks in perforated plates with multiple holes using boundary cracklet method
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Fatigue crack growth simulation of interacting multiple cracks in perforated plates with multiple holes using boundary cracklet method

机译:采用边界裂缝法与多孔相互作用多孔裂缝的疲劳裂纹增长模拟

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摘要

In this study, the recently developed boundary cracklet method (BCM) is used to model the fatigue crack propagation (FCP) in complex geometries in two-dimensional domain. Several benchmark examples of FCP are analysed to show the effectiveness of BCM. Calculated stress intensity factors and crack paths show good agreement with reference studies. BCM is further used to simulate the multiple cracks interaction in a perforated plate with multiple holes having different cases of precracks emanating from edges of the plate and outer periphery of holes under fatigue loading. FCP is assumed to follow Paris-Erdogan law, and the maximum tangential stress criteria are used to predict the direction of propagation in each step. Moreover, to describe the computational efficiency of a numerical method in fatigue problems, a new parameter is introduced: Yavuz's fatigue computational efficiency factor (Y_(CF)), which is the number of computed million cycles per hour (CPU time).
机译:在该研究中,最近开发的边界脆皮方法(BCM)用于将复杂几何形状中的疲劳裂纹传播(FCP)模拟在二维域中。分析了FCP的几个基准示例以显示BCM的有效性。计算的应力强度因子和裂纹路径与参考研究表现出良好的一致性。 BCM还用于模拟穿孔板中的多个裂缝相互作用,其中具有多个孔,其具有从板的板边缘和疲劳负载下的孔的外周散发出来的不同的预裂纹。假设FCP遵循巴黎埃尔多安法,并且最大切向应力标准用于预测每个步骤中的传播方向。此外,为了描述疲劳问题中数值方法的计算效率,介绍了一种新参数:Yavuz的疲劳计算效率因子(Y_(CF)),这是每小时计算百万个周期的数量(CPU时间)。

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