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Investigation of the multiaxial fatigue behaviour of 316 stainless steel based on critical plane method

机译:基于临界平面法的316不锈钢多轴疲劳行为研究

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摘要

In this work, the multiaxial behaviour of 316 stainless steel is studied under the lens of critical plane approach. A series of experiments were developed on dog bone-shaped hollow cylindrical specimens made of type 316 stainless steel. Five different loading conditions were assessed with (a) only tensile axial stress, (b) only hoop stress, (c) combination of axial and hoop stresses with square shape, (d) combination of tensile axial and hoop stresses with L shape, and (e) combination of compressive axial and hoop stresses with L shape. The fatigue analysis is performed with four different critical plane theories, namely, Wang-Brown, Fatemi-Socie, Liu I, and Liu II. The efficiency of all four theories is studied in terms of the accuracy of their life predictions and crack failure plane angle. The best fatigue life predictions were obtained with Liu II model, and the best predictions of the failure plane were obtained with Liu I model.
机译:在这项工作中,在临界平面方法的镜片下研究了316不锈钢的多轴行为。在316型不锈钢制成的狗骨形空心圆柱标本上开发了一系列实验。使用(a)仅张拉伸轴应力,(b)仅通过旋转轴应力,(c)与方形,(d)与l形状的旋转轴向和箍应力组合的组合的旋转轴应力(e)压缩轴向和箍应力与L形的组合。疲劳分析具有四种不同的关键平面理论,即王褐色,Fatemi-Socie,Liu I和Liu II。在其寿命预测和裂纹失效平面角度的准确性方面研究了所有四种理论的效率。利用刘二模型获得了最佳疲劳寿命预测,用刘I模型获得了失效平面的最佳预测。

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