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PREDICTIONS OF ICHAZ CYCLIC THERMO-MECHANICAL RESPONSE IN GTAW PROCESS FOR 9CR STEELS

机译:9Cr钢的GTAW过程中ichaz循环热机械反应的预测

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This work is concerned with the development of a modelling framework to predict the effects of tempered-untempered martensite heterogeneity on the thermo-mechanical performance of welded material. A physically-based visco-plasticity model for the inter-critical heat-affected zone (ICHAZ) for 9Cr steels (e.g. P91, P92) is presented in this work, with the ICHAZ represented as a mixture of tempered and untempered martensite. The constitutive model includes dislocation-based Taylor hardening and damage for different material phases. A sequentially-coupled thermal-mechanical welding simulation is conducted to predict the volume fraction compositions for the various weld-affected material zones in a cross-weld specimen. The out-of-phase cyclic thermo-mechanical (25°C to 600°C) performance of notched and plain samples is comparatively assessed for a range of different tempered-untempered martensitic material heterogeneities. It is shown that the heterogeneity in a simulated cross-weld material is highly detrimental to thermal cyclic performance.
机译:这项工作涉及开发建模框架,以预测钢化无限的马氏体异质性对焊接材料热电性能的影响。在这项工作中提出了一种用于9Cr钢的临界际热影响区域(ICHAZ)的物理基础粘度塑性模型(例如,P91,P92),ICHAZ表示为钢化和无限的马氏体的混合物。本构模型包括基于位错的泰勒硬化和不同材料阶段的损伤。进行了序贯耦合的热机械焊接模拟,以预测跨焊接标本中各种焊接受影响的材料区的体积分数组合物。对于一系列不同的钢化无限的马氏体材料,缺口和普通样品的异相循环热机械(25℃至600℃)的性能相对评估。结果表明,模拟跨焊接材料中的异质性对热循环性能非常有害。

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