Low Cycle Fatigue Behaviors of Alloy 617 (INCONEL 617) Weldments for High Temperature Applications
Author:
Publisher
MDPI AG
Subject
General Materials Science,Metals and Alloys
Link
http://www.mdpi.com/2075-4701/6/5/100/pdf
Reference19 articles.
1. Creep deformation and rupture behavior of Alloy 617
2. Creep behaviour and long-term creep life extrapolation of alloy 617 for a very high temperature gas-cooled reactor
3. Creep and Creep-Fatigue of Alloy 617 Weldments;Wright,2014
4. Cyclic Stress Response and Fracture Behaviors of Alloy 617 Base Metal and Weld Joints under LCF Loading
5. Low cycle fatigue properties of Alloy 617 base metal and weldment at room temperature;Kim;Proc. Mater. Sci. Eur. Conf. Fract.,2014
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1. Fatigue life curves of alloy 617 in the temperature range of 800–950 °C;Nuclear Engineering and Technology;2023-02
2. Fatigue crack initiation behaviors around defects induced by welding thermal cycle in superalloy IN617B;International Journal of Fatigue;2022-05
3. Effect of Post Weld Heat Treatment on the Microstructure and Electrochemical Characteristics of Dissimilar Material Welded by Butter Method;Materials;2020-10-12
4. Properties and anisotropy behaviour of a nickel base alloy material produced by robot-based wire and arc additive manufacturing;Welding in the World;2020-07-24
5. Assessment of fatigue and electrochemical corrosion characteristics of dissimilar materials weld between alloy 617 and 12 Cr steel;Journal of Manufacturing Processes;2020-05
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