Heat Treatment of a Candidate Material for 700 ℃ A-USC Power Plants |
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作者姓名: | Yan CHONG Zheng-dong LIU Andy GODFREY Lu WANG Wei LIU Yu-qing WENG |
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作者单位: | School of Materials Science and Engineering,Tsinghua University;Central Iron and Steel Research Institute |
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基金项目: | Sponsored by High-Tech Research and Development Project of China(2102AA03A501) |
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摘 要: | The preliminary chemical composition optimization and heat treatment parameters of Inconel 740 H were investigated systematically.Six heats of experimental alloys(designated as heat 401 to heat 406)with varied chemical compositions were subjected to standard heat treatment at four different solution temperatures.Due to its superior combination of strength,ductility,and toughness together with its minor mechanical property changes at different solution temperatures,heat 405 was chosen as an optimized one to conduct further heat treatment investigations.The evolution of grain size with solution temperature for heat 405 was studied and the optimal solution temperature was determined.After solution treatment at the optimal temperature,four different cooling rates were applied to investigate the effect of cooling rate on the size distribution modal and mean radius of theγ′precipitates.No bi-modal size distribution ofγ′precipitates was found for all cooling rates and water cooling was recommended for Inconel740 H.In addition,the effect of pre-aging at 800 ℃for 16 hon the microstructure of Inconel 740 Haged for a long time was studied.It is found that pre-aging at 800℃ would result in bi-modal size distribution ofγ′precipitates after long time aging at 750℃compared with mono-modal size distribution in samples without pre-aging,which might be caused by the difference in initial size distribution modal before Ostwald ripening ofγ′precipitates in samples with and without pre-aging at 800 ℃.
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关 键 词: | Inconel 740H heat treatment grain size γ′ precipitate mechanical property |
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