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FATIGUE LIFE PREDICTION OF VORTEX REDUCER BASED ON STRESS GRADIENT

机译:基于应力梯度的涡形减速器疲劳寿命预测

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摘要

The effects of stress gradient and size effect on fatigue life are investigated based on the distributions of stress at notch root of the notched specimens of GH4169 alloy. The relationship between the life of the notched specimens and the smooth specimens is correlated by introducing the stress gradient effect factor, and a new life model of predicting the notched specimens based on the Walker modification for the mean stress effect is established. In order to improve the prediction precision of life model with the equation parameters having a definite physical significance, the relationships among fatigue parameters, monotonic ultimate tensile strength and reduction of area are established. Three-dimensional elastic finite element (FE) analysis of a vortex reducer is carried out to obtain the data of stress and strain for predicting its life. The results show that there is a high-stress gradient at the edge of the air holes of the vortex reducer, and it is thus a dangerous point for fatigue crack initiation. The prediction result of the vortex reducer is more reasonable if the mean stress, stress gradient and size effect are considered comprehensively. The developed life model can reflect the effects of many factors well, especially the stress concentration. The life of the notched specimens predicted by this model give a high estimation precision, and the prediction life data mainly fall into the scatter band of factor 2.
机译:根据GH4169合金缺口试样的缺口根部应力分布,研究了应力梯度和尺寸效应对疲劳寿命的影响。通过引入应力梯度效应因子,将缺口试样的寿命与光滑试样的寿命进行关联,建立了基于沃克修正的平均应力效应预测缺口试样寿命的新模型。为了提高具有确定的物理意义的方程参数的寿命模型的预测精度,建立了疲劳参数,单调极限抗拉强度和面积减小之间的关系。对减震器进行三维弹性有限元分析,以得到应力和应变数据,以预测其寿命。结果表明,在旋涡降低器的气孔边缘处存在高应力梯度,因此这是引发疲劳裂纹的危险点。如果综合考虑平均应力,应力梯度和尺寸效应,则减震器的预测结果更为合理。建立的寿命模型可以很好地反映许多因素的影响,尤其是应力集中。通过该模型预测的缺口试样的寿命具有较高的估计精度,并且预测寿命数据主要落在因子2的散射带中。

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