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Simulation and Measurement of Residual Stresses in a Type 316H Stainless Steel Offset Repair in a Pipe Girth Weld

机译:管道环焊缝中316H不锈钢偏移修复中残余应力的模拟和测量

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In common with all mechanical strain relief residual stress measurement methods, extra care must be taken when making measurements on components containing highly triaxial residual stress fields which are close to yield. The introduction of a free surface, created as part of the measurement procedure, can lead to plastic redistribution of the residual stress field. Usually, this is not accounted for in the elastic inversion algorithms of the experimental procedure. This paper demonstrates the usefulness and accuracy of deep-hole drilling (DHD) method [1] in a component predicted to contain a triaxial residual stress field. Previous measurements [2] are compared with the results of a DHD simulation on a type 316H stainless steel pipe containing a repair weld offset from an original girth weld. The influence of different material models was also studied.
机译:与所有机械应力消除残余应力测量方法一样,在包含接近屈服的高度三轴残余应力场的组件上进行测量时,必须格外小心。在测量过程中引入自由表面会导致残余应力场的塑性重新分布。通常,在实验过程的弹性反演算法中未考虑到这一点。本文证明了深孔钻探(DHD)方法[1]在预计包含三轴残余应力场的组件中的有用性和准确性。将先前的测量结果[2]与DHD模拟在316H型不锈钢管上进行的DHD模拟结果进行比较,该管包含与原始环焊缝偏移的修补焊缝。还研究了不同材料模型的影响。

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