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Multiple surface crack propagation: numerical simulations and experimental tests

机译:多表面裂纹扩展:数值模拟和实验测试

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摘要

In-house experimental observations of three-dimensional fatigue crack growth are compared to numerical predictions by the Boundary Element code BEASY. Fracture analysis results for a complex geometry specimen, undergoing a general load spectrum, are presented with regard to three-dimensional crack propagation and mode coupling effects. The specimens under consideration are cracked tension specimens, with a through-crack or a quarter/semicircular crack that proceed inclined to the remote loading direction. Mixed mode conditions along the crack edge are characterized: the stress intensity factors are determined using the crack opening displacement (COD) method and the crack growth direction is computed by the minimum strain energy density criterion. Effects of specimen complex geometry, produced by a part-through thickness hole near the initial saw-cut notch, on fracture crack path are analysed. Moreover, multiple interacting three-dimensional cracks are simulated correspondingly to experiments: a satisfactory agreement between numerical and experimental crack growth direction and crack growth rates are displayed.
机译:通过边界元素代码BEASY将三维疲劳裂纹扩展的内部实验观察结果与数值预测结果进行了比较。针对三维裂纹扩展和模式耦合效应,给出了复杂几何形状试样的断裂分析结果,该结果经历了一般的载荷谱。所考虑的试样是破裂的拉伸试样,具有贯穿裂纹或四分之一/半圆形裂纹,这些裂纹向远处的加载方向倾斜。表征沿裂纹边缘的混合模式条件:使用裂纹开口位移(COD)方法确定应力强度因子,并通过最小应变能密度准则计算裂纹扩展方向。分析了样品复杂几何形状(由最初的锯齿形切口附近的部分贯通厚度的孔产生)对断裂裂纹路径的影响。此外,与实验相对应地模拟了多个相互作用的三维裂纹:在数值和实验裂纹扩展方向与裂纹扩展速率之间显示出令人满意的一致性。

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