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A cohesive model of fatigue crack growth

机译:疲劳裂纹扩展的内聚模型

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We investigate the use of cohesive theories of fracture, in conjunction with the explicit resolution of the near-tip plastic fields and the enforcement of closure as a contact constraint, for the purpose of fatigue-life prediction. An important characteristic of the cohesive laws considered here is that they exhibit unloading-reloading hysteresis. This feature has the important consequence of preventing shakedown and allowing for steady crack growth. Our calculations demonstrate that the theory is capable of a unified treatment of long cracks under constant-amplitude loading, short cracks and the effect of overloads, without ad hoc corrections or tuning.
机译:我们研究了断裂的内聚性理论,结合近端塑性场的显式分辨率和闭合作为接触约束的实施,以预测疲劳寿命。这里考虑的内聚规律的一个重要特征是它们表现出装卸滞后。该特征具有防止震动并允许裂纹稳定增长的重要结果。我们的计算表明,该理论能够统一处理恒定振幅载荷下的长裂纹,短裂纹和过载效应,而无需进行临时校正或调整。

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