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A comparative study of different biaxial fatigue models

机译:不同双轴疲劳模型的比较研究

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There are a number of theories available to model biaxial fatigue problems. Among these, the critical plane models try to predict not only the fatigue life but also the orientation of the crack or failure plane. This work attempt to analyse the biaxial tension-torsion problem from a strain-based analysis focused on plane failures predictions. Fatigue life and critical plane predictions are carried out applying multiaxial models proposed by Brown-Miller, Fatemi-Socie and Smith-Watson-Topper. The theoretical results are compared with constant amplitude test data, in-phase and out-of-phase (90°) in a structural steel. The results suggest that Smith-Watson-Topper model predictions of fracture plane do not match the real fracture plane. The critical fracture plane predictions of the Brown-Miller and Fatemi-Socie models do not match in most cases with experimental observations either, but considering the second plane of the maximum shear strain amplitude, the predictions of the fracture plane and fatigue life improve substantially.
机译:有许多理论可用于模拟双轴疲劳问题。其中,关键平面模型不仅试图预测疲劳寿命,还试图预测裂纹或破坏平面的方向。这项工作试图从基于平面故障预测的基于应变的分析中分析双轴拉伸-扭转问题。疲劳寿命和临界平面预测是使用Brown-Miller,Fatemi-Socie和Smith-Watson-Topper提出的多轴模型进行的。将理论结果与结构钢中的同相和异相(90°)恒定振幅测试数据进行比较。结果表明,断裂面的Smith-Watson-Topper模型预测与实际断裂面不匹配。在大多数情况下,Brown-Miller模型和Fatemi-Socie模型的临界断裂面预测也与实验观察结果不匹配,但是考虑到最大剪切应变幅度的第二个平面,断裂面和疲劳寿命的预测会大大提高。

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