首页> 美国政府科技报告 >Deformation induced microstructural and microchemical changes during thermomechanical treatment. Final report, FY91 annual progress report, October 1, 1991--September 30, 1991 and third quarter progress report, CY91
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Deformation induced microstructural and microchemical changes during thermomechanical treatment. Final report, FY91 annual progress report, October 1, 1991--September 30, 1991 and third quarter progress report, CY91

机译:变形诱导热机械处理过程中的微观结构和微观化学变化。最终报告,1991财年年度进展报告,1991年10月1日 - 1991年9月30日和第三季度进展报告,CY91

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An analytical model has been developed for predicting thermomechanical effects on the development of grain boundary chromium depletion in austenitic stainless steel as a first step in predicting intergranular stress corrosion cracking susceptibility. Model development and validation is based on sensitization development analysis of over 30 Type 316 and 304 stainless steel heats. The data base included analysis of deformation effects on resultant sensitization development. Continuous cooling sensitization behavior is examined and modeled with and without strain. Gas tungsten arc girth pipe weldments are also characterized by experimental measurements of heat affected zone temperatures, strains and sensitization during/after each pass; pass by pass thermal histories are also predicted. The model is then used to assess pipe chemistry changes on chromium depletion changes.

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