会议论文详细信息
4th International Conference on Advanced Materials Science and Technology
Influence of Austenitizing Heat Treatment on the Properties of the Tempered Type 410-1Mo Stainless Steel
Mabruri, E.^1 ; Syahlan, Z.A.^2 ; Sahlan^2 ; Prifiharni, S.^1 ; Anwar, M.S.^1 ; Chandra, S.A.^1 ; Romijarso, T.B.^1 ; Adjiantoro, B.^1
Research Center for Metallurgy and Materials, Indonesian Institute of Sciences (LIPI), Kawasan Puspiptek, Gd. 470 Serpong, Tangerang Selatan, Indonesia^1
Higher Technical School of PLN, Menara PLN, Jl. Lingkar Luar Barat, Duri Kosambi, Cengkareng, Jakarta, Indonesia^2
关键词: Austenitizing;    Austenitizing temperature;    Induction melting;    Lath martensite;    Pitting potential;    Retained austenite;    Strength and elongations;    tempered Type 410-1Mo;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/202/1/012085/pdf
DOI  :  10.1088/1757-899X/202/1/012085
来源: IOP
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【 摘 要 】

The modified 410-1Mo stainless steel has been developed with higher tensile strength and elongation compared to the standard 410 stainless steel. This paper reports the influence of austenitizing temperature on the microstructure, hardness, impact resistance and corrosion resistance of the modified 410-1Mo steel. The steel samples were prepared by a process sequence of induction melting, hot forging, annealing, hardening, and tempering. The microstructure of the tempered steels revealed additional phase of delta ferrite at pre-austenitizing temperatures of 950 to 1050 °C and disappeared at a temperature of 1100 °C. The steels which underwent pre-austenitizing at 1100 °C showed the largest sized lath martensite and the largest amount of retained austenite. The tempered steels maintained hardness at austenitizing temperatures of 950 °C to 1000 °C and showed an increasing hardness at austenitizing temperatures from 1000 to 1100 °C. At a range of austenitizing temperatures, it was investigated that the steels exhibited higher impact resistance at 1050 °C. The tempered steels that were pre-austenitized at 950 °C and 1100 °C showed the lowest pitting potential due to the existence of carbides and coarse-high carbon martensite, respectively.

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