The Effect of Nb on Mechanical Properties of Quenching and Partitioning Steels

来源 :Journal of Iron and Steel Research(International) | 被引量 : 0次 | 上传用户:emma880222
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In order to study the effect of alloy elements on mechanical properties of quenching and partitioning steels,the Q and P heat treatments on different chemical composition steels were carried on in lab.The tensile test results indicated the strength of Nb+Ti-bearing steel was not increasing as expected,but lower than that of the Nb+Ti-free steel,and the elongation was raised to 26% from 9%.The Nb+Ti-bearing steel microstructures after tensile test were detected by TEM and found a certain amount of twins in the deformed microstructure while the deformed microstructure mainly was lath martensite in Nb+Ti-free steel,which means the addition of Nb and Ti elements could cause the twinning induced plasticity by inhibiting the phase transformation from austenite to martensite.Based on above analysis,adding trace Nb element could greatly increase the stacking fault energy of the retained austenite,which is beneficial to the formation of twins,and the formation of twins would lower the strength slightly and raise the elongation drastically. In order to study the effect of alloy elements on mechanical properties of quenching and partitioning steels, the Q and P heat treatments on different chemical composition steels were carried on in lab. Tensile test results indicated the strength of Nb + Ti-bearing steel was not increasing as expected, but lower than that of the Nb + Ti-free steel, and the elongation was raised to 26% from 9%. Nb + Ti-bearing steel microstructures after tensile test were detected by TEM and found a certain amount of twins in the deformed microstructure while the deformed microstructure mainly was lath martensite in Nb + Ti-free steel, which means the addition of Nb and Ti elements could cause the twinning induced plasticity by inhibiting the phase transformation from austenite to martensite. analysis, adding trace Nb element could greatly increase the stacking fault energy of the retained austenite, which is beneficial to the formation of twins, and the formation of twins would lower the strength slightly and raise the elongation drastically
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