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CREEP RELAXATION OF RESIDUAL STRESSES IN THE HEAT AFFECTED ZONE OF TYPE 316H AUSTENITIC STAINLESS STEEL WELDMENTS

机译:316H奥氏体不锈钢焊接件热影响区的残余应力蠕变松弛

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The present work extends the understanding of the role of thermo-mechanical history on the relaxation of residual stresses. Different thermo-mechanical pre-treatments have been developed and applied to an ex-service Type 316H austenitic stainless steel to produce both microstructures and residual macro-stresses typical of those in the heat affected zone (HAZ) of thick section attachment weldments, where reheat cracking has been observed during high temperature service (~550°C). The microstructures have been characterised after each step of pre-treatment. The through section residual macro-stresses have been measured by neutron diffraction. For the range of thermo-mechanical pre-treatments adopted, the relaxation of the initial residual macro-stresses have been measured following thermal exposure at a temperature of 550°C for times of 1h and 1800h. The results are discussed, based on the relaxation characteristics of the residual macro-stresses, in terms of the role of initial microstructure on the creep deformation behaviour and the susceptibility to the service reheat cracking.
机译:目前的工作扩展了对热力学历史在松弛残余应力方面的作用的理解。已经开发出不同的热机械预处理方法,并将其应用于退役的316H型奥氏体不锈钢,以产生微观结构和残余宏观应力,这些应力和残余宏观应力通常是厚截面附件焊件的热影响区(HAZ)中会再次加热的地方。在高温(〜550°C)下观察到开裂。在预处理的每个步骤之后对微结构进行了表征。贯穿截面的残余宏观应力已通过中子衍射测量。对于所采用的热机械预处理范围,已在550°C的温度下暴露1h和1800h的时间后测量了初始残余宏观应力的松弛。讨论了基于残余宏观应力的松弛特性,初始微观结构对蠕变变形行为的作用以及对服务再热裂纹敏感性的结果。

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