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Numerical Methods for Safeguarding the Performance of the Quenching Process 被引量:1
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作者 I.FELDE T.RETI +4 位作者 S.Segerberg J.Bodin G.S.Sarmiento G.E.Totten J.GU 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第5期519-521,共3页
A new numerical technique for testing and evaluation of quenching media and quenching systems is outlined. The measured time-temperature samples as a result of cooling curve test are analyzed by the new software devel... A new numerical technique for testing and evaluation of quenching media and quenching systems is outlined. The measured time-temperature samples as a result of cooling curve test are analyzed by the new software developed, in order to characterize quantitatively the quenchants. The method applied is based on Fourier analysis. Examples for evaluation and comparison of cooling performance of quenchants are presented the applicability of the computational technique. 展开更多
关键词 淬火 冷却曲线 控制范围 最佳化 判定支持
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Modeling of Intercritical Heat Treatment of DP and TRIP Steels
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作者 REGERMihaly VEROBalazs +1 位作者 CSEPELIZsolt PANJiansheng 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第05B期710-715,共6页
The final microstructure of DP and TRIP assisted steels can evolve after hot working (hot rolling) or during post heat treatment process. In the formation of the final structure a number of different technological par... The final microstructure of DP and TRIP assisted steels can evolve after hot working (hot rolling) or during post heat treatment process. In the formation of the final structure a number of different technological parameters have important roles, e.g. end temperature of rolling, cooling rates, temperature of intercritical annealing, etc. As a result of the individual factors and their combinations a lot of product technology routes are feasible. The effect of the different combinations of these technological parameters on the microstructure can be mapped by the special Jominy end-quench test (so called intercritical Jominy end-quench test) described in this paper. Unlike the traditional Jominy test, in this case there is a partial austenizing between A! and A3 temperatures which results in a given amount of ferrite in the microstructure before quenching. The method developed can be applied for mapping DP and TRIP assisted steels’ microstructure in a wide range of technological parameters. The analysis of measured and calculated data can help us find the technological parameters optimal from the microstructural point of view. 展开更多
关键词 双相钢 TRIP钢 临界状态 热处理
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