Simulation of κ-Carbide Precipitation Kinetics in Aged Low-Density Fe–Mn–Al–C Steels and Its Effects on Strengthening

被引:0
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作者
Jaeeun Lee
Siwook Park
Hwangsun Kim
Seong-Jun Park
Keunho Lee
Mi-Young Kim
Phaniraj P. Madakashira
Heung Nam Han
机构
[1] Seoul National University,Department of Materials Science and Engineering and Research Institute of Advanced Materials
[2] Korea Institute of Materials Science,Advanced Metallic Materials Division, Ferrous Alloy Department
[3] Agency for Defense Devolopment,undefined
来源
关键词
Low-density steel; Aging; κ-Carbide; Precipitation; Numerical simulation;
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学科分类号
摘要
Fe–Al–Mn–C alloy systems are low-density austenite-based steels that show excellent mechanical properties. After aging such steels at adequate temperatures for adequate time, nano-scale precipitates such as κ-carbide form, which have profound effects on the mechanical properties. Therefore, it is important to predict the amount and size of the generated κ-carbide precipitates in order to control the mechanical properties of low-density steels. In this study, the microstructure and mechanical properties of aged low-density austenitic steel were characterized. Thermo-kinetic simulations of the aging process were used to predict the size and phase fraction of κ-carbide after different aging periods, and these results were validated by comparison with experimental data derived from dark-field transmission electron microscopy images. Based on these results, models for precipitation strengthening based on different mechanisms were assessed. The measured increase in the strength of aged specimens was compared with that calculated from the models to determine the exact precipitation strengthening mechanism.
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页码:702 / 710
页数:8
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