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Effects of ausforming strain on bainite transformation in nanostructured bainite steel

Effects of ausforming strain on bainite transformation in nanostructured bainite steel
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摘要 The effects of ausforming strain on bainite transformation in high-carbon low-alloy nanobainite steel were investigated using a Gleeble 3500 thermomechanical simulator machine. The bainite transformation speed at 300°C was found to be accelerated by ausforming at 300, 600, and 700°C under applied strains ranging from 10% to 50% followed by isothermal transformation at 300°C. The ausformed bainite volume fraction varied with the ausforming strain because of the mechanical stabilization of the deformed austenite. Ausforming at low temperatures not only enhanced the bainite ferrite volume fraction but also refined the microstructure substantially. Although the amount of bainite ferrite might have been reduced with increasing strain, the microstructures were refined by ausforming. © 2017, University of Science and Technology Beijing and Springer-Verlag Berlin Heidelberg. The effects of ausforming strain on bainite transformation in high-carbon low-alloy nanobainite steel were investigated using a Gleeble 3500 thermomechanical simulator machine.The bainite transformation speed at 300°C was found to be accelerated by ausforming at 300,600,and 700°C under applied strains ranging from 10% to 50% followed by isothermal transformation at 300°C.The ausformed bainite volume fraction varied with the ausforming strain because of the mechanical stabilization of the deformed austenite.Ausforming at low temperatures not only enhanced the bainite ferrite volume fraction but also refined the microstructure substantially.Although the amount of bainite ferrite might have been reduced with increasing strain,the microstructures were refined by ausforming.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第3期264-270,共7页 矿物冶金与材料学报(英文版)
基金 the National Natural Science Foundation of China(Nos.51271035 and 51371032)for funding this work financial support from the National Natural Science Foundation of China(No.51204092) the Key Laboratory Fundamental Research Project of the Education Department of Liaoning Province,China(No.LZ2015046)
关键词 Alloy steel BAINITE Carbon Enzyme kinetics FERRITE Microstructure Nanostructured materials Phase transitions STRAIN Volume fraction phase transformations kinetics bainite steels nanostructured materials, ausforming
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