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Articles

Reduction of temper embrittlement of 2·25Cr–1Mo steels by rare earth additions

Pages 273-279 | Published online: 19 Jul 2013

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Zhonghua Jiang, Pei Wang & Dianzhong Li. (2023) Role of Solute Rare Earth in Altering Phase Transformations during Continuous Cooling of a Low Alloy Cr–Mo–V Steel. Acta Metallurgica Sinica (English Letters) 36:9, pages 1523-1535.
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Zhonghua Jiang, Pei Wang, Dianzhong Li & Yiyi Li. (2020) Effects of rare earth on microstructure and impact toughness of low alloy Cr-Mo-V steels for hydrogenation reactor vessels. Journal of Materials Science & Technology 45, pages 1-14.
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Wenbin Xin, Bo Song, Mingming Song & Gaoyang Song. (2015) Effect of Cerium on Characteristic of Inclusions and Grain Boundary Segregation of Arsenic in Iron Melts. steel research international 86:12, pages 1430-1438.
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W.M. GarrisonJr.Jr. & N.R. Moody. 2012. Gaseous Hydrogen Embrittlement of Materials in Energy Technologies. Gaseous Hydrogen Embrittlement of Materials in Energy Technologies 421 492 .
J.H. Bulloch. (1999) The embrittlement characteristics of large turbine casing bolts: the influence of service induced strain. International Journal of Pressure Vessels and Piping 76:2, pages 79-90.
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J.H. Bulloch. (1999) Reverse temper embrittlement, RTE, in low alloy steels: a substantive study concerning the influences of grain size, bulk phosphorus and accumulated service strain. International Journal of Pressure Vessels and Piping 76:2, pages 63-78.
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J.H Bulloch. (1998) Toughness losses in low alloy steels at high temperatures: an appraisal of certain factors concerning the small punch test. International Journal of Pressure Vessels and Piping 75:11, pages 791-804.
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K.H.W. Seah, L. Lu, S.C. Sharma, J. Venkatesh & B.M. Girish. (1997) Mechanical properties of as-cast and heat-treated lead alloy/zircon particulate composites. Composites Part A: Applied Science and Manufacturing 28:2, pages 113-119.
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J.H. Bulloch & J.J. Hickey. (1994) Restoration of charpy toughness for “in service” temper embrittled steels. Theoretical and Applied Fracture Mechanics 21:2, pages 131-141.
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J.H Bulloch. (1994) An appraisal of certain factors which influence toughness restoration (de-embrittlement) in some temper embrittled low alloy steels. International Journal of Pressure Vessels and Piping 58:2, pages 231-247.
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P. Parameswaran, M. Vijayalakshmi, P. Shankar & V. S. Raghunathan. (2004) Influence of carbon content on microstructure and tempering behaviour of 2 1/4 Cr 1 Mo steel. Journal of Materials Science 28:20, pages 5426-5434.
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W.R. Tyson, B. Faucher, M. Shehata & Y.S. Hong. 1988. Mechanical Behaviour of Materials V. Mechanical Behaviour of Materials V 357 364 .
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W. Barrett, G.G. Garrett & J.V. Bee. (1987) The effect of sulphur on the temper embrittlement susceptibility of a rare earth - containing low alloy steel. Scripta Metallurgica 21:2, pages 123-128.
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C. I. Garcia, G. A. Ratz, M. G. Burke & A. J. DeArdo. (2012) Reducing Temper Embrittlement by Lanthanide Additions. JOM 37:9, pages 22-28.
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