Comparative Evaluation of Creep-Rupture Behavior of P9 Steel Plate and Thick Section Tubeplate Forging

Author:

Choudhary B. K.,Isaac Samuel E.,Christopher J.,Yadav S. D.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference55 articles.

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3. F. Abe, M. Tabuchi, M. Kondo, and S. Tsukamoto, Suppression of Type IV Fracture and Improvement of Creep Strength of 9Cr Steel Welded Joints by Boron Addition, Int. J. Pres. Ves. Pip., 2007, 84, p 44–52

4. J. Hald, Creep Strength and Ductility of 9 to 12% Chromium Steels, Mater. High Temp., 2004, 21, p 41–46

5. B. Raj, Challenges to Material Scientists and Technologists for Robust and Economical Fast Reactor Technology, Pressure Vessels and Piping: Codes, Standards, Design and Analysis, B. Raj, B.K. Choudhary, and K. Velusamy, Ed., Narosa Publishing House, New Delhi, 2009, p 1–32

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2. Creep life estimation of a service‐exposed P91 cross‐weld joint based on a primary‐secondary creep deformation model;Fatigue & Fracture of Engineering Materials & Structures;2022-11-20

3. Coupled effect of temperature and stress on the microstructure and stress rupture behavior of 9% Cr-CrMoV dissimilar welded joints;Engineering Failure Analysis;2022-02

4. Creep Behavior of Inconel-625 and Its Modeling at 843 K;Transactions of the Indian National Academy of Engineering;2021-10-16

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