Cumulative Fatigue Life Estimation Under Combined Shot Peening and Elevated Temperature for AA7001-T6

H. Mahdi, Saad T. Faris, Raad Mohammed Abed, H. M. Alalkawi
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Abstract

The fatigue life of aluminum alloys (7001–T6) and shot peening at various temperatures are predicted in this study. Shot peening (SP) steel balls is a surface treatment technique that can help minimize damage. This study set out to conduct an experimental investigation in order to ascertain the amount of damage caused by fatigue buildup for AA7001-T6 under rotating bending loading and a stress ratio R = -1. RT (room temperature), 330 °C, and SP + 330 °C were the temperatures used in the testing. To predict the fatigue life under high temperatures, it was suggested to use a modified damage stress model that had been established to take damage at different load levels into account. To determine the most damage (Miner's rule), the output of the current model was compared to experimental findings and the output from the fatigue damage model. The comparison showed that the current model had a respectable level of safety, whereas the miners' model had two models: one for low-high loading and the other for high-low loading, and the results were suitable for extending fatigue life. Despite the fact that H-L loading has a longer fatigue life (19477) cycles than the experimental (16433 cycles), L-H loading is conservative (Nf is 19477 cycles less than the experimental (24733 cycles) (non-conservative).
喷丸强化与高温联合作用下AA7001-T6的累积疲劳寿命估算
对7001-T6铝合金在不同温度下的疲劳寿命和喷丸强化进行了预测。喷丸强化(SP)钢球是一种表面处理技术,可以帮助减少损伤。为了确定AA7001-T6在旋转弯曲载荷和应力比R = -1条件下的疲劳累积损伤量,本研究着手进行了一项实验研究。RT(室温)、330℃、SP + 330℃为测试温度。为了预测高温下的疲劳寿命,建议使用已经建立的考虑不同载荷水平下损伤的修正损伤应力模型。为了确定最大损伤(Miner’s rule),将当前模型的输出与实验结果和疲劳损伤模型的输出进行比较。对比结果表明,当前模型具有较好的安全水平,而矿工模型有高低负荷和高低负荷两种模型,结果适合延长疲劳寿命。尽管H-L加载的疲劳寿命(19477次)比实验(16433次)长,但L-H加载是保守的(Nf比实验(24733次)少19477次)(非保守)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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