Creep–fatigue interaction behaviour of a 15Cr–15Ni, Ti modified austenitic stainless steel as a function of Ti/C ratio and microstructure
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference41 articles.
1. SOME CREEP/FATIGUE PROPERTIES OF TYPE 316 STEEL AT 625°C
2. CREEP-FATIGUE BEHAVIOUR OF FOUR CASTS OF TYPE 316 STAINLESS STEEL
3. Elevated-temperature low-cycle fatigue behavior of different heats of type 304 stainless steel
4. Heat-to-heat variations in the fatigue and creep-fatigue behavior of AISI type 304 stainless steel at 593°C
5. High-temperature time-dependent fatigue behaviour of several engineering structural alloys
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1. Study on Creep-Fatigue Mechanical Behavior and Life Prediction of Ti2AlNb-Based Alloy;Materials;2022-09-08
2. Creep-fatigue interaction and damage behavior in 9-12%Cr steel under stress-controlled cycling at elevated temperature: Effects of holding time and loading rate;International Journal of Fatigue;2022-03
3. Planar dislocation structure during creep-fatigue interactions of TP347H heat-resistant austenitic steel at 600 °C;Materials Science and Engineering: A;2020-03
4. Modelling creep-fatigue behaviours using a modified combined kinematic and isotropic hardening model considering the damage accumulation;International Journal of Mechanical Sciences;2019-10
5. Low cycle fatigue and creep-fatigue response of the 316Ti stainless steel;Frattura ed Integrità Strutturale;2019-03-07
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