Effect of strain rate and notch geometry on tensile properties and fracture mechanism of creep strength enhanced ferritic P91 steel
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference41 articles.
1. Evolution of phases in P91 steel in various heat treatment conditions and their effect on microstructure stability and mechanical properties
2. Influence of Chemical Composition and Heat Treatment on Long-term Creep Strength of Grade 91 Steel
3. Creep deformation and failure of E911/E911 and P92/P92 similar weld-joints
4. Structural materials for Gen-IV nuclear reactors: Challenges and opportunities
5. Elevated temperature ferritic and martensitic steels and their application to future nuclear reactors
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1. Cyclic deformation behaviors and damage mechanisms in P92 steel under creep-fatigue loading: Effects of hold condition and oxidation;International Journal of Fatigue;2024-10
2. Study on Normalizing and Tempering Treatment Regime of Homogenization of P92 Weldments;METALLOFIZIKA I NOVEISHIE TEKHNOLOGII;2024-08-16
3. Effect of Multiaxiality on the Stress Rupture Properties of P92 Steel;IRAN J MATER SCI ENG;2024
4. Enhanced toughness and ductility of T91 steel after exposure to liquid LBE saturated by oxygen at 350–500 °C;Journal of Materials Research and Technology;2024-05
5. Significant reduction in creep life of P91 steam pipe elbow caused by an aberrant microstructure after short-term service;Scientific Reports;2024-03-03
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