Intergranular Cracking Susceptibility of 2.25Cr Heat-Resistant Steels Depending on Alloying Elements and Impurities
Author:
Publisher
Springer Science and Business Media LLC
Subject
Metals and Alloys,Mechanics of Materials,Condensed Matter Physics
Link
http://link.springer.com/content/pdf/10.1007/s11661-016-3390-1.pdf
Reference38 articles.
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3. F. Abe, T.U. Kern, R. Viswanathan: Creep resistant steels, Woodhead Publishing Ltd, Cambridge, UK, 2008.
4. A. Dhooge, J. Vekeman: Weld. World, 2005, vol. 49, pp. 75-93.
5. Y.J. Jin, H. Lu, C. Yu, J.J. Xu: Mater. Charac, 2013, vol. 84, pp. 216-224.
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1. Microstructural and Finite Element Analysis of Creep Failure in Dissimilar Weldment Between 9Cr and 2.25Cr Heat-Resistant Steels;Metallurgical and Materials Transactions A;2018-08-09
2. Reduction of Intergranular Cracking Susceptibility by Precipitation Control in 2.25Cr Heat-Resistant Steels;Metallurgical and Materials Transactions A;2017-01-10
3. Roles of Molybdenum and Tungsten on Reheat Cracking Susceptibility of 2.25Cr Heat Resistant Steels;ISIJ International;2017
4. Difference in Reheat Cracking Susceptibility of 2.25Cr-W and 9Cr-W Heat-resistant Steels;ISIJ International;2017
5. Roles of bulk carbon content on grain size, carbide reactions and intergranular rupture life in 2.25cr martensitic heat resistant steels;Metals and Materials International;2016-10-30
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