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MEASURING MULTIPLE RESIDUAL-STRESS COMPONENTS USING CONTOUR METHOD AND MULTIPLE CUTS

机译:使用轮廓法和多切割法测量多个残余应力分量

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摘要

The conventional contour method determines one component of residual stress over the cross section of a part. The part is cut into two, the contour (topographic shape) of the exposed surface is measured, and Bueckner’s superposition principle is analytically applied to calculate stresses. In this paper, the contour method is extended to the measurement of multiple residual-stress components by making multiple cuts with subsequent applications of superposition. The theory and limitations are described. The theory is experimentally tested on a 316L stainless steel disk with residual stresses induced by plastically indenting the central portion of the disk. The multiple-cut contour method results agree very well with independent measurements using neutron diffraction and with a computational, finite-element model of the indentation process.
机译:常规轮廓法确定零件截面上残余应力的一个分量。将零件切成两部分,测量裸露表面的轮廓(地形形状),然后将Bueckner的叠加原理应用于分析以计算应力。在本文中,轮廓法扩展到了对多个残余应力分量的测量,方法是进行多次切割,然后再进行叠加。描述了理论和局限性。该理论在316L不锈钢圆盘上进行了实验测试,其残余应力是通过在圆盘的中心部分塑性压痕而产生的。多次切割轮廓法的结果与使用中子衍射的独立测量结果以及压痕过程的计算有限元模型非常吻合。

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