Substructural evolution in a directionally solidified nickel-base superalloy during relaxation fatigue tests at 850 °C
Author:
Funder
Gas Turbine Research Establishment Bangalore, India
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference10 articles.
1. Thermomechanical fatigue mechanism in a modern single crystal nickel base superalloy TMS-82
2. Low cycle fatigue behaviour of a low interstitial Ni-base superalloy
3. A high temperature deformation mechanism map for the high performance Ni-base superalloy GTD-111
4. Hold-Time Effects on Low-Cycle-Fatigue Behavior of Hastelloy X Superalloy at High Temperatures
5. Strain-time effects in low-cycle fatigue of nickel-base heat-resistant alloys at high temperature
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1. Thermomechanical and isothermal fatigue properties of MAR-M247 superalloy;Theoretical and Applied Fracture Mechanics;2024-06
2. Elevated-temperature gigacycle fatigue properties of nickel based superalloy: Grain related cracking mechanism and life prediction modelling;Engineering Fracture Mechanics;2022-02
3. Low Cycle Fatigue Behavior of a Directionally Solidified Nickel-Based Superalloy: Mechanistic and Microstructural Aspect;Metallurgical and Materials Transactions A;2020-03-14
4. Mean-stress and oxidation effects on fatigue behaviour of CM 247 DS LC alloy;Materials Science and Technology;2019-05-23
5. Creep‐fatigue deformation micromechanisms of a directionally solidified nickel‐base superalloy at 850°C;Fatigue & Fracture of Engineering Materials & Structures;2019-05-21
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