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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Residual stress analysis of energy-dispersive diffraction data using a two-detector setup: Part II - Experimental implementation
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Residual stress analysis of energy-dispersive diffraction data using a two-detector setup: Part II - Experimental implementation

机译:使用两个探测器的能量色散衍射数据的残余应力分析:第二部分-实验实施

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摘要

Based on the theoretical concept of a two-detector setup for the energy-dispersive diffraction method (Apel et al., 2017), the experimental implementation of the proposed measurement concepts is demonstrated. The measurement configurations as well as the formalism for data evaluation introduced in the first part of this series are applied to the analysis of in- and out-of-plane near surface residual stress gradients in mechanically surface treated steel. Diffraction experiments carried out with the Bremsstrahlung of a conventional X-ray tube are shown to yield results with a quality comparable to measurements conducted at a synchrotron beamline. Furthermore, it is demonstrated that the simultaneous measurement of the positive and the negative ψ-branch can partly compensate for the much higher counting times due to the lower photon flux of the X-ray tube. The results are compared and assessed with those obtained by means of synchrotron radiation (beamline EDDI@BESSY II) and the layer removal method (LRM).
机译:基于能量色散衍射方法的两个探测器设置的理论概念(Apel等人,2017),论证了所提出的测量概念的实验实现。在本系列的第一部分中介绍的测量配置以及数据评估的形式主义被用于分析经过机械表面处理的钢的面内和面外近表面残余应力梯度。结果表明,用常规X射线管的carried致辐射进行的衍射实验所产生的结果质量与在同步加速器光束线上进行的测量结果相当。此外,已经证明,由于X射线管的光子通量较低,同时测量正和负ψ分支可以部分补偿更长的计数时间。将结果与通过同步加速器辐射(beamline EDDI @ BESSY II)和层去除方法(LRM)获得的结果进行比较和评估。

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