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首页> 外文期刊>Experimental Mechanics >User Influence on Two Complementary Residual Stress Determination Methods: Contour Method and Incremental X-Ray Diffraction
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User Influence on Two Complementary Residual Stress Determination Methods: Contour Method and Incremental X-Ray Diffraction

机译:用户对两种补充残余应力确定方法的影响:轮廓法和增量X射线衍射

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摘要

The combination of various residual stress measurement methods is a common practice to complete knowledge that a single measurement method cannot provide. In this study, incremental X-Ray diffraction is combined with the contour method to measure a bent notched specimen to study the methods robustness. A finite element analysis model is built and validated with strain measurement of the bending process thus providing prior knowledge of the residual stress field. Three-dimensional neutron diffraction residual stress measurements are also performed to obtain a reference measurement with a non-destructive method and to validate the simulated stress field. In-depth stress gradient measured by X-ray diffraction is corrected with four different methods that all show good correlation with neutron diffraction measurements. Correction methods, assumptions and uncertainties are discussed and differences are observed on the robustness of the methods. Contour method measurements are performed and results are also in agreement with neutron measurements. The results provided by the contour method are complementary to those of the X-Ray diffraction since, despite a lower accuracy on the edges where X-ray diffraction is performed, the contour method offers the complete cartography of longitudinal stress in a symmetry plane of the bent specimen. Uncertainty of the contour method due to the post-processing procedure is discussed.
机译:各种残余应力测量方法的组合是一种常见的实践,可用来完成单一测量方法无法提供的知识。在这项研究中,将增量X射线衍射与轮廓法相结合来测量弯曲的缺口试样,以研究该方法的鲁棒性。建立了有限元分析模型,并通过弯曲过程的应变测量对其进行了验证,从而提供了残余应力场的先验知识。还执行了三维中子衍射残余应力测量,以使用非破坏性方法获得参考测量并验证了模拟应力场。用四种不同的方法校正了X射线衍射测得的深度应力梯度,这些方法均显示出与中子衍射测量的良好相关性。讨论了校正方法,假设和不确定性,并观察到了方法的鲁棒性。进行轮廓法测量,结果也与中子测量一致。轮廓法提供的结果与X射线衍射的结果相辅相成,因为尽管执行X射线衍射的边缘的精度较低,但轮廓法仍提供了X射线衍射对称面中纵向应力的完整制图。弯曲的标本。讨论了由于后处理过程而引起的轮廓方法的不确定性。

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