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Characterising Residual Stresses in a Dissimilar Metal Electron Beam Welded Plate

机译:特征在不同金属电子束焊接板中的残余应力

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Dissimilar metal welded components are becoming increasingly common in industrial applications especially in the nuclear sector. Dissimilar metal welding refers to the joining of two materials from different alloy groups. One of the basic requirements of the dissimilar metal welded joint is that the joint strength should be greater than or equal to that of the weakest member and a careful characterisation of the joint is crucial before considering the applicability of the dissimilar metal welded components. The current paper explores the feasibility of an electron beam welded joint between ferritic/martensitic Grade 91 or more commonly known as modified P91 and austenitic 316LN stainless steel, without the addition of any filler material. The residual stress distribution arising from the welding is determined from measurements using neutron diffraction experiment and predictions using finite element analysis. The measured data has been analysed using Rietveld and single peak fits. The finite element analysis was conducted on a two-dimensional cross-sectional model using ABAQUS code, implementing the effects of solid-state phase transformation experienced by P91 steel. The predicted residual stresses are compared with the experimental measurements and conclusions are drawn on the final residual stress distribution.
机译:不同的金属焊接部件在核部门的工业应用中越来越常见。不同的金属焊接是指从不同合金基团的两种材料的连接。不同的金属焊接接头的基本要求之一是,关节强度应大于或等于最弱的成员的或等于接头的仔细表征在考虑不同金属焊接组分的适用性之前至关重要。目前纸张探讨了铁素体/马氏体级91或更常见的改性P91和奥氏体316Ln不锈钢之间的电子束焊接接头的可行性,而无需加入任何填充材料。使用中子衍射实验和使用有限元分析的预测来确定由焊接产生的残余应力分布。使用RIETVELD和单峰拟合进行了分析了测量的数据。使用ABAQUS代码在二维横截面模型上进行有限元分析,实现P91钢经历的固态相变的影响。将预测的残余应力与实验测量结果进行比较,并在最终残余应力分布上绘制了结论。

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