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Original Articles

Weldability of 9Cr‐1Mo‐Nb, V P91 steel intended for service in the power industry

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Pages 370-380 | Published online: 09 Dec 2009

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

Read on this site (3)

Aravinda Pai, Irappa Sogalad & S. Basavarajappa. (2023) Effect of thickness on mechanical properties of modified 9Cr 1Mo steel welds made by narrow gap hot wire gas tungsten arc welding process. Welding International 37:4, pages 185-205.
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Chuang Gao, Xizhang Chen, Xiao Chen & Chuanchu Su. (2019) Microstructure and mechanical properties of as-deposited and heat-treated additive manufactured 9Cr steel. Materials Science and Technology 35:18, pages 2234-2242.
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M. Sireesha, S.K. Albert & S. Sundaresan. (2001) Importance of filler material chemistry for optimising weld metal mechanical properties in modified 9Cr–1Mo steel. Science and Technology of Welding and Joining 6:4, pages 247-254.
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Articles from other publishers (8)

Akhil Khajuria, Modassir Akhtar, Raman Bedi, Rajneesh Kumar, Mainak Ghosh, C.R. Das & Shaju K. Albert. (2020) Influence of boron on microstructure and mechanical properties of Gleeble simulated heat-affected zone in P91 steel. International Journal of Pressure Vessels and Piping 188, pages 104246.
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Chien-Chun Liao, Chu-Chun Wang, Tai-Cheng Chen, Ren-Kae Shiue & Leu-Wen Tsay. (2020) Effects of Thermal Simulation on the Creep Fracture of the Mod. 9Cr-1Mo Weld Metal. Metals 10:9, pages 1181.
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Modassir Akhtar, Akhil Khajuria, V. S. Kumar, R. K. Gupta & Shaju K. Albert. (2019) Evolution of Microstructure during Welding Simulation of Boron Modified P91 Steel. Physics of Metals and Metallography 120:7, pages 672-685.
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Modassir Akhtar, Akhil Khajuria, Jitendra K. Sahu, J. Swaminathan, Rajneesh Kumar, Raman Bedi & Shaju K. Albert. (2018) Phase transformations and numerical modelling in simulated HAZ of nanostructured P91B steel for high temperature applications. Applied Nanoscience 8:7, pages 1669-1685.
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C. Pandey, A. Giri & M.M. Mahapatra. (2016) Effect of normalizing temperature on microstructural stability and mechanical properties of creep strength enhanced ferritic P91 steel. Materials Science and Engineering: A 657, pages 173-184.
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V. Kalyanasundaram, A. Saxena & S.R. Holdsworth. (2013) WITHDRAWN: Dislocation-based constitutive modeling of martensitic/ferritic steels at elevated temperatures. Part II: Cyclic behavior without hold time effects. International Journal of Plasticity.
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V. Gaffard, A.F. Gourgues-Lorenzon & J. Besson. (2005) High temperature creep flow and damage properties of 9Cr1MoNbV steels: Base metal and weldment. Nuclear Engineering and Design 235:24, pages 2547-2562.
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V. GAFFARD, A. F. GOURGUES-LORENZON & J. BESSON. (2005) High Temperature Creep Flow and Damage Properties of the Weakest Area of 9Cr1Mo-NbV Martensitic Steel Weldments. ISIJ International 45:12, pages 1915-1924.
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