Effect of Temperature on Ratcheting Behaviour of 316LN SS

Author:

Sarkar Aritra,Nagesha A.,Sandhya R.,Mathew M.D.

Publisher

Elsevier BV

Subject

Applied Mathematics

Reference10 articles.

1. N. Isobe, M. Sukekawa, Y. Nakayama, T. Ohtani, S. Date, Y. Takahasi, N. Kasahara, K. Nakamura, H. Shibamoto, H. Nakamuto, K. Inoue. Design criteria for ratcheting fatigue of 316FR steel under fast reactor conditions. 18th International Conference on Structural Mechanics in Reactor Technology (SMiRT 18), Beijing, China, August 7-12, 2005.

2. Ratcheting and low cycle fatigue behavior of SA333 steel and their life prediction;Paul;Journal of Nuclear Materials,2010

3. Fatigue damage of AISI 304LN stainless steel: Role of mean stress;Ray;Procedia Engineering,2010

4. Experimental study on uniaxial and non proportionally multiaxial ratcheting of SS304 stainless steel at room and high temperatures;Kang;Nuclear Enginering and Design,2002

5. G. Kang, J. Zhang, Y. Sun, Q. Kan, Uniaxial Time-Dependent Ratcheting of SS304 Stainless Steel at High Temperatures. Journal of Iron and Steel Research, International 14(1) 2007; 14(1): 53-9.

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1. Dynamic strain aging-mediated temperature dependence of ratcheting behavior in a 316LN austenitic stainless steel;Materials Science and Engineering: A;2023-01

2. A Critical Review of Fatigue Life Prediction on 316LN SS;Advances in Modelling and Optimization of Manufacturing and Industrial Systems;2023

3. Uniaxial ratcheting behavior and molecular dynamics simulation evaluation of 316LN stainless steel;Materials Science and Engineering: A;2022-08

4. Influence of Dynamic Strain Aging on Ratcheting Deformation Behavior of SA333 Gr-6 Steel;Journal of Materials Engineering and Performance;2022-06-03

5. Effect of Mean Stress on Ratcheting Fatigue Behavior of Modified 9 Cr–1 Mo Steel at RT and 600 °C;Transactions of the Indian National Academy of Engineering;2022-01-05

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