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Multi-axial contour method for mapping residual stresses in continuously processed bodies

机译:映射连续加工物体中残余应力的多轴轮廓方法

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This paper describes a method for extending the capability of the contour method to allow for the measurement of spatially varying multi-axial residual stresses in prismatic, continuously processed bodies. Currently, the contour method is used to determine a 2D map of the residual stress normal to a plane. This work uses an approach similar to the contour method to quantify multiple components of eigenstrain in continuously processed bodies, which are used to calculate residual stress. The result of the measurement is an estimate of the full residual stress tensor at every point in the body. The approach is first outlined for a 2D body and the accuracy of the methodology is demonstrated for a representative case using a numerical experiment. Next, an extension to the 3D case is given and the accuracy is demonstrated for representative cases using numerical experiments. Finally, measurements are performed on a thin sheet of Ti-6Al-4V with a band of laser peening down the center (assumed to be 2D) and a thick laser peened plate of 316L stainless steel to show that the approach is valid under real experimental conditions.
机译:本文介绍了一种扩展轮廓方法功能的方法,该方法可以测量连续加工的棱柱体中空间变化的多轴残余应力。当前,轮廓法用于确定垂直于平面的残余应力的二维图。这项工作使用类似于轮廓法的方法来量化连续加工物体中本征应变的多个分量,这些分量用于计算残余应力。测量结果是对人体每个点的全部残余应力张量的估计。首先概述了2D体的方法,并使用数字实验对代表性案例证明了该方法的准确性。接下来,给出了3D情况的扩展,并使用数值实验证明了代表性情况的准确性。最后,在一块Ti-6Al-4V薄板上进行测量,并在其中心向下进行激光喷丸处理(假定为2D),并用厚316L不锈钢进行激光喷丸处理,以表明该方法在实际实验中是有效的。条件。

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