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Weld residual stresses near the bimetallic interface in clad RPV steel: A comparison between deep-hole drilling and neutron diffraction data

机译:复合RPV钢双金属界面附近的焊接残余应力:深孔钻探和中子衍射数据的比较

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摘要

The inner surface of ferritic steel reactor pressure vessels (RPV) is clad with strip welded austenitic stainless steel primarily to increase the long-term corrosion resistance of the ferritic vessel. The strip welding process used in the cladding operation induces significant residual stresses in the clad layer and in the RPV steel substrate, arising both from the thermal cycle and from the very different thermal and mechanical properties of the austenitic clad layer and the ferritic RPV steel. This work measures residual stresses using the deep hole drilling (DHD) and neutron diffraction (ND) techniques and compares residual stress data obtained by the two methods in a stainless clad coupon of A533B Class 2 steel. The results give confidence that both techniques are capable of assessing the trends in residual stresses, and their magnitudes. Significant differences are that the ND data shows greater values of the tensile stress peaks (∼100 MPa) than the DHD data but has a higher systematic error associated with it. The stress peaks are sharper with the ND technique and also differ in spatial position by around 1 mm compared with the DHD technique. © 2014 Elsevier B.V.
机译:铁素体钢反应堆压力容器(RPV)的内表面覆盖有带钢焊接奥氏体不锈钢,主要是为了提高铁素体容器的长期耐腐蚀性。覆层操作中使用的带钢焊接工艺会在覆层和RPV钢基材中产生明显的残余应力,这是由于热循环以及奥氏体覆层和铁素体RPV钢的非常不同的热和机械性能引起的。这项工作使用深孔钻探(DHD)和中子衍射(ND)技术测量残余应力,并比较两种方法在A533B 2类钢的不锈钢复合试样中通过两种方法获得的残余应力数据。结果使人确信这两种技术都能够评估残余应力的趋势及其幅度。显着差异是ND数据显示的拉伸应力峰值(〜100 MPa)比DHD数据大,但与之相关的系统误差更高。与ND技术相比,ND技术的应力峰值更尖锐,并且在空间位置上的差异也约为1 mm。 ©2014 Elsevier B.V.

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