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Stress measurement using area detectors: a theoretical and experimental comparison of different methods in ferritic steel using a portable X-ray apparatus

机译:使用面积检测器进行应力测量:使用便携式X射线设备对铁素体钢中不同方法进行理论和实验比较

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Using area detectors for stress determination by diffraction methods in a single exposure greatly simplifies the measurement process and permits the design of portable systems without complex sample cradles or moving parts. An additional advantage is the ability to see the entire or a large fraction of the Debye ring and thus determine texture and grain size effects before analysis. The two methods most commonly used to obtain stress from a single Debye ring are the so-called and full-ring fitting methods, which employ least-squares procedures to determine the stress from the distortion of a Debye ring by probing a set of scattering vector simultaneously. The widely applied method, in contrast, requires sample rotations to probe a different subset of scattering vector orientations. In this paper, we first present a description of the different methods under the same formalism and using a unified set of coordinates that are suited to area detectors normal to the incident beam, highlighting the similarities and differences between them. We further characterize these methods by means of in situ measurements in carbon steel tube samples, using a portable detector in reflection geometry. We show that, in the absence of plastic flow, the different methods yield basically the same results and are equivalent. An analysis of possible sources of errors and their impact in the final stress values is also presented.
机译:在单次曝光中使用面积检测器通过衍射法确定应力的方法大大简化了测量过程,并允许设计便携式系统而无需复杂的样品架或移动部件。另一个优势是能够看到整个或大部分的德拜环,从而在分析之前确定纹理和晶粒尺寸的影响。从单个德拜环获得应力最常用的两种方法是所谓的全环拟合方法,该方法采用最小二乘程序通过探测一组散射矢量来确定来自德拜环变形的应力。同时。相反,广泛应用的方法需要旋转样品以探测散射矢量方向的不同子集。在本文中,我们首先以相同的形式描述不同的方法,并使用适合于垂直于入射光束的区域检测器的统一坐标集,突出说明它们之间的异同。我们通过使用反射几何形状的便携式检测器对碳钢管样品进行原位测量来进一步表征这些方法。我们表明,在没有塑性流动的情况下,不同的方法产生的结果基本相同,并且是等效的。还介绍了可能的错误来源及其对最终应力值的影响的分析。

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