Investigations on creep life of Alloy 617 material for the final stage superheater coils for ultra super critical thermal power plants
Author:
Publisher
Elsevier BV
Subject
General Medicine
Reference17 articles.
1. China’s R&D of advanced ultra-supercritical coal-fired power generation for addressing climate change;Fan;Thermal Sci. Eng. Prog.,2018
2. Oxidation characteristics and oxide layer evolution of alloy 617 and Haynes 230 at 900 C and 1100 C;Kim;Oxid. Met.,2009
3. Steam oxidation behavior of alloy 617 at 900° C to 1100° C;Liang;Metall. Mater. Trans. A,2018
4. Mechanism and kinetics oxidation of Inconel 617 and 625 alloys;Staszewska;Techn. Issues,2016
5. Development of nickel alloys based on alloy 617 for components in 700° C power plants;Klöwer;Proc. Eng.,2013
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1. A Method for Predicting the Creep Rupture Life of Small-Sample Materials Based on Parametric Models and Machine Learning Models;Materials;2023-10-22
2. Ash deposition and heat transfer characteristics on the convective heating surface of calcium‐rich Zhundong coal combustion in a 0.4‐MW th facility;Asia-Pacific Journal of Chemical Engineering;2022-05
3. Remnant creep life estimation approach for Alloy 617 tubes of ultra-supercritical thermal power plants;Engineering Failure Analysis;2021-12
4. Effect of variations internal pressure on cracking radiant coils distortion;Structures;2021-12
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