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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Genetic algorithm optimization of the hole-drilling method for non-uniform residual stress fields
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Genetic algorithm optimization of the hole-drilling method for non-uniform residual stress fields

机译:非均匀残余应力场钻孔方法的遗传算法优化

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摘要

The hole-drilling method, coupled with the influence functions method, is a versatile technique for measuring residual stresses. The latter determines a relationship between residual stress and measured relaxed strains for any experimental configuration and material. However, several parameters which describe the functional basis for the residual stress must be defined. This paper presents a procedure, based on the least squares method and genetic algorithms, optimally to choose these parameters to reduce the effects of noise and uncertainty in experimental measurements. The performance of the method was tested against finite element simulations for typical applications such as shot peening, showing that the method is flexible and accurate and allows the reconstruction of residual stress at deeper positions than other techniques.
机译:钻孔方法与影响函数方法相结合,是一种用于测量残余应力的通用技术。后者确定了任何实验配置和材料的残余应力与测得的松弛应变之间的关系。但是,必须定义几个描述残余应力功能基础的参数。本文提出了一种基于最小二乘法和遗传算法的程序,可以最佳地选择这些参数,以减少实验测量中噪声和不确定性的影响。针对典型应用(例如喷丸处理)的有限元模拟对方法的性能进行了测试,结果表明该方法灵活,准确,与其他技术相比,可以在更深的位置重建残余应力。

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