Low Cycle Fatigue Behavior of Cerium-Modified Stainless Steel at Elevated Temperatures and the Impact of Aluminum/Zinc Ratio
Author:
Affiliation:
1. VIT Bhopal University, Mechanical Engineering
2. Dhanalakshmi Srinivasan Engineering College, Department of R
3. Chennai Institute of Technology, Department of Mechanical
4. Kongunadu College of Engineering and Technology, Department
Abstract
Publisher
SAE International
Reference10 articles.
1. Reuchet , J. and Remy , L. High Temperature Low Cycle Fatigue of MAR-M 509 Superalloy I: The Influence of Temperature on the Low Cycle Fatigue Behaviour from 20 to 1100 C Materials Science and Engineering 58 1 1983 19 32
2. Clavel , M. and Pineau , A. Fatigue Behaviour of Two Nickel-Base Alloys I: Experimental Results on Low Cycle Fatigue, Fatigue Crack Propagation and Substructures Materials Science and Engineering 55 2 1982 157 171
3. Srinivasan , V.S. et al. Effects of Temperature on the Low Cycle Fatigue Behaviour of Nitrogen Alloyed Type 316L Stainless Steel International Journal of Fatigue 13 6 1991 471 478
4. Nagesha , A. et al. Influence of Temperature on the Low Cycle Fatigue Behaviour of a Modified 9Cr–1Mo Ferritic Steel International Journal of Fatigue 24 12 2002 1285 1293
5. Zhang , Z.F. , Gu , H.C. , and Tan , X.L. Low-Cycle Fatigue Behaviors of Commercial-Purity Titanium Materials Science and Engineering: A 252 1 1998 85 92
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