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Proposal for a direct-method for stress measurement using an X-ray area detector

机译:关于使用X射线区域检测器进行应力测量的直接方法的建议

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The cosα method and the 2D method are well known as X-ray stress measurements using an area detector. Although the X-ray exposure of the cosα method occurs once, the accuracy of the center of the detector is required due to usage of the oblique incident X-ray beam. In the 2D method, the X-ray beams have to be applied from multiple orientations, and multiple measurements are required. In this study, I propose a new method for X-ray stress measurement using an area detector. Its method is called the direct-method”. The diffraction angles are measured with the area detector and the normal incident X-ray beam, and then the stresses are optimized by a simplex method. To examine effectiveness of the direct-method, I measured the residual stresses caused by water-jet peening. The stresses obtained were close to those obtained by the other method. It is discussed that precision of a detector center is important in usage of the area detector. In the case of the normal incident X-ray beam, the shape of the diffraction ring is an ellipse and has point symmetry at the origin. Using this property, the center of the area detector can be corrected. Further, the direct-method was applied to measuring the residual stresses coming from the grinding process. After correcting the center of the diffraction ring, the stresses which were optimized by the simplex method corresponded to those measured by the sin~2ψ method. In addition, the direct-method was extended to a cosα method.
机译:众所周知,cosα方法和2D方法是使用面积检测器的X射线应力测量。尽管cosα方法的X射线曝光发生一次,但是由于使用了倾斜入射X射线束,所以需要检测器的中心的精度。在二维方法中,必须从多个方向施加X射线束,并且需要多次测量。在这项研究中,我提出了一种使用面积检测器测量X射线应力的新方法。其方法称为“直接方法”。使用面积检测器和法向入射X射线束测量衍射角,然后通过单纯形法优化应力。为了检查直接方法的有效性,我测量了喷水喷丸造成的残余应力。获得的应力接近于通过另一种方法获得的应力。讨论了检测器中心的精度在面积检测器的使用中很重要。在垂直入射X射线束的情况下,衍射环的形状为椭圆形,并且在原点具有点对称性。使用此属性,可以校正区域检测器的中心。此外,将直接方法应用于测量来自磨削过程的残余应力。在校正了衍射环的中心之后,通过单纯形法优化的应力对应于通过sin〜2ψ方法测得的应力。另外,直接方法扩展到了cosα方法。

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