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Through-process modelling of welding and service of 9Cr steel power plant components under load-following conditions

机译:在负载下的条件下9CR钢电厂组件焊接与服务的焊接和服务

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This paper is concerned with the development of a through-process model to predict the in-service performance of high-temperature, 9Cr steel, power plant components. A multi-pass welding simulation is conducted using the finite element software Abaqus. A user-material subroutine, including microstructure evolution and a physically-based constitutive model, is employed to predict the mechanical response of the material during welding and to predict welding residual stresses. Points are sampled from the FE geometry and their microstructure parameters and residual stress values are used in a uniaxial code to predict the relative in-service lives of the different weld regions under load-following power plant operating conditions. It is shown that post-weld heat treatment significantly improves predicted life and that there is a strong correlation between predicted microstructure before service and the predicted in-service life.
机译:本文涉及开发贯穿流程模型,以预测高温,9Cr钢,电厂部件的运送性能。使用有限元软件ABAQU进行多遍焊接仿真。使用包括微观结构演化和物理基本模型的用户材料子程序,用于预测焊接期间材料的机械响应,并预测焊接残余应力。从Fe几何中采样点,并且它们的微观结构参数和残余应力值用于单轴代码中,以预测在负载跟随的发电厂操作条件下不同焊接区域的相对居住寿命。结果表明,焊接后热处理显着改善了预测的寿命,并且在服务前预测的微观结构与预测的在使用寿命之前存在强烈的相关性。

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