首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Influence of Nb-Microalloying on the Formation of Nano/Ultrafine-Grained Microstructure and Mechanical Properties During Martensite Reversion Process in a 201-Type Austenitic Stainless Steel
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Influence of Nb-Microalloying on the Formation of Nano/Ultrafine-Grained Microstructure and Mechanical Properties During Martensite Reversion Process in a 201-Type Austenitic Stainless Steel

机译:Nb微合金化对201型奥氏体不锈钢中马氏体逆转过程中纳米/超细粒度微观结构和力学性能形成的影响

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摘要

In this study, influence of Nb-microalloying on formation of nano/ultrafined grain microstructure and mechanical properties during martensite reversion process in a 201-type austenitic stainless steel microalloyed with Nb was investigated. For this purpose, the 90 pct cold-rolled samples with almost fully martensitic microstructure were reversion annealed at 1023 K to 1173 K (750 A degrees C to 900 A degrees C) for 5 to 1800 seconds. The microstructural evolution was characterized using X-ray diffractometer, Ferritescope, optical microscope, scanning, and transmission electron microscopes. Mechanical properties were evaluated using hardness and tensile tests. The reversion mechanism was found to be diffusion controlled. In comparison with other types of 201 steel, the kinetics of grain growth at 1173 K (900 A degrees C) was much slower in the Nb-bearing steel, being related to the rapid precipitation of nano-sized Nb-rich carbonitrides during reversion process. At this temperature, the finest austenitic microstructure was achieved in the specimen reversion annealed for 60 seconds, possessing a microstructure composed of nano and ultrafined grains with an average grain size of 93 nm. This specimen exhibited an excellent combination of ultrahigh strength (yield strength of 1 GPa and tensile strength of 1.5 GPa) and good ductility (tensile elongation of 35 pct). (C) The Minerals, Metals & Materials Society and ASM International 2015
机译:在该研究中,研究了Nb-microploying在Martensite逆转过程中形成纳米/超出晶粒微观结构和MartensiteNite的不锈钢中的Martensite逆转过程中的力学性能的影响。为此目的,具有几乎全部马氏体微观结构的90pct冷轧样品在1023k至1173k(750℃至900℃)下恢复为5至1800秒。使用X射线衍射仪,FerRIScope,光学显微镜,扫描和透射电子显微镜表征了微观结构的进化。使用硬度和拉伸试验评估机械性能。发现逆转机制是扩散控制的。与其他类型的201钢相比,1173 k(900℃)的籽粒生长动力学在Nb轴承钢中较慢,与换算过程中纳米大小的富含碳氮化物的快速沉淀有关。在该温度下,在试样逆转中实现最佳的奥氏体微结构60秒,具有由纳米和超内晶粒组成的微观结构,其平均晶粒尺寸为93nm。该样本表现出优异的超高强度组合(屈服强度为1GPa,拉伸强度为1.5 gpa)和良好的延展性(拉伸伸长率为35pct)。 (c)2015年矿物质,金属和材料协会和ASM国际

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