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Quantification of Residual Stress Relief by Heat Treatments in Austenitic Cladded Layers

机译:奥氏体包层热处理残余应力释放的量化

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The effect of the heat treatment on the residual stresses of welded cladded steel samples is analyzed in this study. The residual stresses across the plate's square sections were determined using complementary methods; applying diffraction with neutron radiation and mechanically using the contour method. The analysis of the large coarse grain austenitic cladded layers, at the feasibility limits of diffraction methods, was only made possible by applying both methods. The samples are composed of steel plates, coated on one of the faces with stainless steel filler metals, this coating process, usually known as cladding, was carried out by submerged arc welding. After cladding, the samples were submitted to two different heat treatments with dissimilar parameters: one at a temperature of 620 degrees C maintained for 1 h and, the second at 540 degrees C, for ten hours. There was some difference in residual stresses measured by the two techniques along the surface of the coating in the as-welded state, although they are similar at the welding interface and in the heat-affected zone. The results also show that there is a residual stress relaxation for both heat-treated samples. The heat treatment carried out at a higher temperature showed sometimes more than 50 reduction in the initial residual stress values and has the advantage of being less time consuming, giving it an industrial advantage and making it more viable economically.
机译:本文分析了热处理对焊接包层钢试样残余应力的影响。使用互补方法测定板正方形截面的残余应力;用中子辐射施加衍射,并使用轮廓法进行机械处理。在衍射方法的可行性极限下,只有通过应用这两种方法才能实现对大粗晶粒奥氏体包层的分析。样品由钢板组成,在其中一个面上涂有不锈钢填充金属,这种涂层过程通常称为熔覆,是通过埋弧焊进行的。包覆后,样品被提交到两种不同的热处理中,具有不同的参数:一种在620°C的温度下保持1小时,另一种在540°C下保持10小时。在焊接状态下,两种技术沿涂层表面测量的残余应力存在一些差异,尽管它们在焊接界面和热影响区相似。结果还表明,两种热处理样品均存在残余应力松弛。在较高温度下进行的热处理有时会使初始残余应力值降低50%以上,并且具有耗时较少的优点,使其具有工业优势并使其在经济上更具可行性。

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