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A New Analytical Approach for Hole Drilling Residual Stress Analysis by Full Field Method

机译:全场法进行钻孔残余应力分析的新方法

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Most of the full field methods for residual stress investigation combine an optical interferometric technique (grating interferometry, speckle interferometry, holographic interfe-ometry) with the standard hole drilling method. Nowadays many articles describing this kind of approach exist, but most of them focus on the experimental aspects while little attention is devoted to the optimal usage of the huge mass of data that the optical methods make available. This paper, without relying on a specific experimental technique, focuses on the development of a new analytical method that attempts to consistently use all the available data. After a detailed algorithm description, the proposed analysis procedure is tested against numerically generated residual stress fields simulating in-plane speckle interferometry. The results obtained show the reliability and robustness of the algorithm.
机译:大多数用于残余应力研究的全场方法都将光学干涉技术(光栅干涉,斑点干涉,全息干涉)与标准钻孔方法结合在一起。如今,存在许多描述这种方法的文章,但其中大多数都集中在实验方面,而很少关注光学方法可提供的大量数据的最佳使用。本文在不依赖特定实验技术的情况下,重点研究了一种试图始终使用所有可用数据的新分析方法。经过详细的算法描述后,针对模拟平面内斑点干涉法的数值生成的残余应力场对提出的分析程序进行了测试。所得结果表明了该算法的可靠性和鲁棒性。

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