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A new analytical approach for describing fatigue load sequence effects

机译:一种描述疲劳载荷序列效应的新分析方法

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Load sequence effects in fatigue crack growth, such as retardation and acceleration due to a large overload (OL) and underload (UL), can dramatically change the (remaining) fatigue life. These effects can be determined using analytical and numerical tools, often trading accuracy for a steep increase in required calculation time. This paper describes a novel analytical model that includes these load sequence effects, with reasonable accuracy and with significantly less computation time as compared to numerical tools. This analytical description is based on observations from numerical simulation and fatigue crack growth experiments. The model uses simple and scalable equations for the OL effect on the crack openings stress. It also accounts for the effect of very low stress valleys, ULs, that can (partly) cancel this effect. This UL effect is treated independently of the OL. This adopted modular approach provides the model with the required flexibility to describe (semi-) variable amplitude signals. The model is calibrated with a set of experiments and compared against the experimental results and analytical models from literature.
机译:负载序列效果在疲劳裂纹的生长中,例如由于大型过载(OL)和欠载(UL)而导致的延迟和加速度,可以显着改变(剩余的)疲劳寿命。这些效果可以使用分析和数值工具来确定,通常交易准确性,以便陡峭增加所需的计算时间。本文介绍了一种新的分析模型,包括这些负载序列效应,具有合理的精度,与数字工具相比,计算时间明显较少。该分析描述基于来自数值模拟和疲劳裂纹生长实验的观察。该模型使用简单且可伸缩的方程对裂缝开口应力的OL效应。它还考虑了极低的压力谷,ULS的影响,可以(部分)取消这种效果。该UL效应独立于OL处理。这种采用的模块化方法提供了模型,具有描述(半)可变幅度信号的所需灵活性。该模型用一组实验进行校准,并与文献的实验结果和分析模型进行比较。

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