Experimental and numerical creep–fatigue study of Type 316 stainless steel failure under high temperature LCF loading condition with different hold time

Author:

Hormozi R.,Biglari F.,Nikbin K.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference47 articles.

1. Lombardi P, Budano S, Gianfrancesco A, Nikbin K, Biglari F, Gomes AM, et al. Development of methods for the characterisation, fracture assessment and life prediction of new high strength steels under variable temperature operating conditions. DELOC: RFSR CT 2007-00021: 01/01/2007–30/06/2010, Final Report; 2010. p. 231.

2. Thermomechanical fatigue—damage mechanisms and mechanism-based life prediction methods;Christ;Sadhana,2003

3. Peter Haehner EA, Tilmann Beck, Hellmuth Klingelhoeffer, Malcolm Loveday, Claudia Rinaldi. validation code-of-practice for strain-controlled thermo-mechanical fatigue testing. MTU Aero Engines, D, and JRC-Institute for Energy, NL; 2006.

4. Thermo-mechanical fatigue life prediction methods;Sehitoglu;ASTM STP 1122,1992

5. Characterization of cyclic plastic behavior of SS 316 stainless steel;Shit;Int J Engng Sci Innovative Technol (IJESIT),2013

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