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首页> 外文期刊>International Journal of Fatigue >Prediction Of Fatigue Crack Growth And Residual Life Using An Exponential Model: Part Ⅱ (mode-i Overload Induced Retardation)
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Prediction Of Fatigue Crack Growth And Residual Life Using An Exponential Model: Part Ⅱ (mode-i Overload Induced Retardation)

机译:使用指数模型预测疲劳裂纹扩展和残余寿命:第二部分(i型超载引起的滞后)

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摘要

Almost all load bearing components usually experience variable amplitude loading (VAL) rather than constant amplitude loading (CAL) during their service lives. A single overload cycle introduced in a constant amplitude fatigue loading retards fatigue crack growth and increases residual fatigue life. Although many models have been proposed on this subject, but life prediction under these complex situations is still under constant improvement. The present study aims at evaluating retardation in fatigue life due to application of a single tensile overload spike by adopting an exponential model. The proposed model calculates not only parameters related with overload induced retardation in fatigue crack growth, but also residual life in case of 7020-T7 and 2024-T3 aluminum alloys with reasonable accuracy without integration of rate equation. The model also covers stage-Ⅱ and stage-Ⅲ of post-overload period.
机译:几乎所有的承重部件在使用寿命期间通常都会经受可变振幅载荷(VAL)而不是恒定振幅载荷(CAL)。在恒定振幅的疲劳载荷中引入的单个过载循环可延迟疲劳裂纹的扩展并延长残余疲劳寿命。尽管已针对此主题提出了许多模型,但是在这些复杂情况下的寿命预测仍在不断改进。本研究旨在通过采用指数模型评估由于施加单个拉伸过载尖峰而导致的疲劳寿命延迟。该模型不仅可以计算与疲劳裂纹扩展中过载引起的延迟相关的参数,而且还可以计算出7020-T7和2024-T3铝合金在没有速率方程积分的情况下具有合理精度的剩余寿命。该模型还涵盖了超负荷后阶段的第二阶段和第三阶段。

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