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Residual Stress Calculation by Measuring Deformation After a Diagonal Cut

机译:通过测量对角切割后的变形来计算残余应力

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摘要

A new straightforward method for residual stress measurement is presented. A specimen is cut in half along its diagonal by using electric discharge machining, and the deformation benchmarks are measured to determine the displacements caused by release of the residual stresses. Analytically, to verify calculation accuracy of the new method, the known stresses are applied in finite element model as an initial condition. By using the series expansion approach, the inverse calculation based on displacements gives the original longitudinal residual stress of the specimen. This "wedge method'' is more straightforward than other relaxation methods because it measures fewer data. Its data processing is simpler, yet its result is found to be in good agreement with other methods. The new method is first outlined for a three-dimensional (3-D) body and the accuracy of the methodology is demonstrated for a representative case using a numerical experiment. Then measurements are performed on a block specimen of AA6061-T6 to show that the approach is valid under real experimental conditions.
机译:提出了一种新的简单的残余应力测量方法。使用放电加工将试样沿其对角线切成两半,然后测量变形基准,以确定由释放残余应力引起的位移。在分析上,为了验证新方法的计算精度,已知应力被作为有限元模型应用在有限元模型中。通过使用级数展开法,基于位移的逆计算得出了样品的原始纵向残余应力。这种“楔形方法”比其他松弛方法更直接,因为它只测量较少的数据,它的数据处理更简单,但是发现其结果与其他方法很好地吻合。通过数值实验证明了(3-D)主体和方法的准确性,然后对AA6061-T6的块状样本进行了测量,表明该方法在实际实验条件下是有效的。

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