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Control of Strain Hardening Behavior in High-Mn Austenitic Steels 被引量:10

Control of Strain Hardening Behavior in High-Mn Austenitic Steels
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摘要 Austenitic high-Mn steels with Mn contents between approximately 15 and 30 wt% gain much interest because of their excellent mechanical properties and the option for adjusting strain hardening behavior due to different deformation mechanisms. 2D and 3D composition-dependent stacking fault energy (SFE) maps indicate the effect of chemical composition and temperature on SFE and consequently on the deformation mechanisms. Three steels with different chemical compositions and the same or different SFE are characterized in quasi-static tensile tests. The control parameters of strain hardening behavior in the high-Mn austenitic steels are described, and consequences for future developments are discussed. Austenitic high-Mn steels with Mn contents between approximately 15 and 30 wt% gain much interest because of their excellent mechanical properties and the option for adjusting strain hardening behavior due to different deformation mechanisms. 2D and 3D composition-dependent stacking fault energy (SFE) maps indicate the effect of chemical composition and temperature on SFE and consequently on the deformation mechanisms. Three steels with different chemical compositions and the same or different SFE are characterized in quasi-static tensile tests. The control parameters of strain hardening behavior in the high-Mn austenitic steels are described, and consequences for future developments are discussed.
机构地区 Steel Institute
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2014年第3期546-556,共11页 金属学报(英文版)
基金 support of the Deutsche Forschungsgemeinschaft(DFG) within the Collaborative Research Center(SFB) 761 "Steelab initio"
关键词 High-Mn austenitic steels Stacking fault energy Strain hardening High-Mn austenitic steels Stacking fault energy Strain hardening
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