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On the applicability of multiaxial high cycle fatigue criteria to metallic materials

机译:多轴高周疲劳准则对金属材料的适用性

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A comparative study is made of the applicability of critical plane based multiaxial high cycle fatigue models to predicting the fatigue behavior of metallic materials. A number of models, namely Matake, McDiarmid, Carpinteri and Spagnoli, Liu and Mahadevan and Papadopoulos, were applied to fatigue limit states, involving synchronous fully reversed in-phase sinusoidal bend and torsion loading. The results obtained indicated a good predictive capability of the models with an average error index situated approximately between -5,5% and 4,5%. However, this average was limited to less than 3% for the latter three models. Finally, the critical plane orientation, which, for a given material, is characteristic of the proper model, is compared with that of the fracture plane, exclusively determined by the ratio between the shear stress and normal stress amplitudes.
机译:进行了基于临界平面的多轴高周疲劳模型在预测金属材料疲劳行为方面的适用性的比较研究。 Matake,McDiarmid,Carpinteri和Spagnoli,Liu和Mahadevan和Papadopoulos等许多模型被应用到疲劳极限状态,涉及同步完全反转的同相正弦曲线弯曲和扭转载荷。获得的结果表明该模型具有良好的预测能力,平均误差指数约为-5.5%至4.5%。但是,对于后三个模型,该平均值被限制为小于3%。最后,对于给定的材料,临界平面的方向是适当模型的特征,将其与断裂平面的方向进行比较,而断裂平面的方向完全由剪切应力和法向应力振幅之比确定。

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