Creep degradation assessment in 9%Cr heat-resistant steel welded joints using ultrasonic methods
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
General Physics and Astronomy
Reference23 articles.
1. High-temperature short-term tensile test and creep rupture strength prediction of the T92/TP347H dissimilar steel weld joints;Chen;Eng Fail Anal,2012
2. Creep fracture behavior of dissimilar weld joints between T92 martensitic and HR3C austenitic steels;Cao;Int J Press Vessels Pip,2011
3. 9%Cr heat resistant steels: Alloy design, microstructure evolution and creep response at 650 °C;Rojas;Mater Sci Eng, A,2011
4. Evaluation of creep damage in heat affected zone of thick welded joint for Mod. 9Cr–1Mo steel;Li;Int J Press Vessels Pip,2009
5. 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;Wang;Weld World,2017
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1. Effect of Microstructure on Mechanical Properties of 316 LN Austenitic Stainless Steel;Coatings;2022-10-04
2. Creep Failure Simulation in 9%Cr Heat-Resistant Steel Joint Based on the Continuum Damage Mechanics;Strength of Materials;2022-05
3. Investigation of creep degradation in a Super304H austenitic steel and its nonlinear ultrasonic assessment method;Materials at High Temperatures;2022-02-16
4. Investigation of the microstructure evolution in TP347HFG austenitic steel at 700°C and its characterization method;High Temperature Materials and Processes;2021-01-01
5. Improvement in Weldment of Dissimilar 9% CR Heat-Resistant Steels by Post-Weld Heat Treatment;Metals;2020-10-02
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