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A Stochastic Modeling for Predicting Fatigue Crack Growth under Variable Amplitude Loading

机译:可变振幅负荷下预测疲劳裂纹生长的随机塑造

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In this study, to investigate and to predict the crack growth behavior under variable amplitude loading, crack growth tests are conducted on 7575-T6 aluminum alloy. The loading waveforms are generated by normal random number generator. All waveforms have same average and RMS(root mean square) value, but different standard deviation, which is to vary the maximum load in each wave. The modified Forman's equation is used as crack growth equation. Using the retardation coefficient D defined in the previous study, the load interaction effect is considered. The variability in crack growth process is described by the random variable Z that was obtained from crack growth tests under constant amplitude loading. From these, a statistical model is developed. The curves predicted by the proposed model well describe the crack growth behavior under variable amplitude loading and agree with experimental data. In addition, this model well predicts the variability in crack growth process under variable amplitude loading.
机译:在该研究中,为了预测可变振幅负载下的裂纹生长行为,在7575-T6铝合金上进行裂纹生长试验。加载波形由正常随机数发生器生成。所有波形都具有相同的平均值和RMS(均方根方形)值,但标准偏差不同,这是改变每个波中的最大负载。修改的Forman的等式用作裂缝增长方程。使用先前研究中定义的延迟系数D,考虑负载相互作用效果。裂纹生长过程的可变性由在恒定幅度载荷下从裂纹生长试验中获得的随机变量Z描述。由此,开发了统计模型。所提出的模型预测的曲线很好地描述了可变幅度负载下的裂纹生长行为,并与实验数据一致。此外,该模型良好地预测可变幅度负荷下裂纹生长过程的可变性。

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