70
Views
16
CrossRef citations to date
0
Altmetric
Articles

Simulation of role of precipitate in creep void occurrence in heat affected zone of high Cr ferritic heat resistant steels

Pages 544-549 | Published online: 04 Dec 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

T. L. Burnett, R. Geurts, H. Jazaeri, S. M. Northover, S. A. McDonald, S. J. Haigh, P. J. Bouchard & P. J. Withers. (2015) Multiscale 3D analysis of creep cavities in AISI type 316 stainless steel. Materials Science and Technology 31:5, pages 522-534.
Read now
Sunil Goyal, K. Laha, K.S. Chandravathi, P. Parameswaran & M.D. Mathew. (2011) Finite element analysis of type IV cracking in 2.25Cr–1Mo steel weldment based on micro-mechanistic approach. Philosophical Magazine 91:23, pages 3128-3154.
Read now
T. Shirane, S. Tsukamoto, K. Tsuzaki, Y. Adachi, T. Hanamura, M. Shimizu & F. Abe. (2009) Ferrite to austenite reverse transformation process in B containing 9%Cr heat resistant steel HAZ. Science and Technology of Welding and Joining 14:8, pages 698-707.
Read now
J. A. Francis, W. Mazur & H. K. D. H. Bhadeshia. (2006) Review Type IV cracking in ferritic power plant steels. Materials Science and Technology 22:12, pages 1387-1395.
Read now

Articles from other publishers (12)

Maohong Yang, Zheng Zhang & Linping Li. (2021) Evolution of Precipitated Phases during Creep of G115/Sanicro25 Dissimilar Steel Welded Joints. Materials 14:17, pages 5018.
Crossref
Li, Li, Cai & Pan. (2019) A Review of Austenite Memory Effect in HAZ of B Containing 9% Cr Martensitic Heat Resistant Steel. Metals 9:11, pages 1233.
Crossref
Zhen Liu, Zhengdong Liu, Xitao Wang, Zhengzong Chen & Longteng Ma. (2018) Evolution of the microstructure in aged G115 steels with the different concentration of tungsten. Materials Science and Engineering: A 729, pages 161-169.
Crossref
Xue Wang, Xiao Wang, Huijun Li, Hong-liang Wu, Yao-yao Ren, Hong-wei Liu & Hong Liu. (2017) Laves phase precipitation behavior in the simulated fine-grained heat-affected zone of creep strength enhanced ferritic steel P92 and its role in creep void nucleation and growth. Welding in the World 61:2, pages 231-239.
Crossref
Lianyong Xu, Yongfa Wang, Hongyang Jing, Lei Zhao & Yongdian Han. (2016) Deformation Mechanism and Microstructure Evolution of T92/S30432 Dissimilar Welded Joint During Creep. Journal of Materials Engineering and Performance 25:9, pages 3960-3971.
Crossref
Triratna Shrestha, Mehdi Basirat, Sultan Alsagabi, Anumat Sittiho, Indrajit Charit & Gabriel P. Potirniche. (2016) Creep rupture behavior of welded Grade 91 steel. Materials Science and Engineering: A 669, pages 75-86.
Crossref
Benjamin A. Shassere, Yukinori Yamamoto & Sudarsanam Suresh Babu. (2016) Toward Improving the Type IV Cracking Resistance in Cr-Mo Steel Weld Through Thermo-Mechanical Processing. Metallurgical and Materials Transactions A 47:5, pages 2188-2200.
Crossref
Triratna Shrestha, Indrajit Charit & Gabriel Potirniche. (2015) In Situ Tensile Deformation and Residual Stress Measurement by Neutron Diffraction in Modified 9Cr-1Mo Steel. Journal of Materials Engineering and Performance 24:12, pages 4710-4720.
Crossref
Xue Wang, Qiang Xu, Shu-min Yu, Hong Liu, Lei Hu & Yao-yao Ren. (2015) Laves-phase evolution during aging in fine grained heat-affected zone of a tungsten-strengthened 9% Cr steel weldment. Journal of Materials Processing Technology 219, pages 60-69.
Crossref
Y. Liu, S. Tsukamoto, T. Shirane & F. Abe. (2013) Formation Mechanism of Type IV Failure in High Cr Ferritic Heat-Resistant Steel-Welded Joint. Metallurgical and Materials Transactions A 44:10, pages 4626-4633.
Crossref
Xue WANG, Qiangang PAN, Yongshun TAO, Yinglin ZHANG, Huiqiang ZENG & Hong LIU. (2013) TYPE IV CREEP RUPTURE CHARACTERISTICS OF P92 STEEL WELDMENT. ACTA METALLURGICA SINICA 48:4, pages 427-434.
Crossref
G.B. Sarma & B. Radhakrishnan. (2008) Modeling the effect of microstructural features on the nucleation of creep cavities. Materials Science and Engineering: A 494:1-2, pages 92-102.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.