The effect of temperature on the low cycle fatigue of type 316L stainless steel over the range 20–200°C
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference10 articles.
1. Proc. 1st Int. Conf. on Pressure Vessel Technology;Berling,1969
2. Quantitative characterization of the substructure of AISI 316 stainless steel resulting from creep
3. The relationship between striation spacing, macroscopic crack growth rate, and the low-cycle fatigue life of a Type 316 stainless steel at 625°C
4. Proc. 2nd. Int. Conf. on LCF and Elasto-plastic Behaviour of Materials;Taillard,1987
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2. Low-cycle fatigue behavior of 316L-type stainless steel in chloride solutions;Corrosion Science;2009-12
3. Tensile and low-cycle fatigue properties of solution annealed type 316L stainless steel plate and TIG-weld exposed to 5 dpa at low-temperature (42°C);Journal of Nuclear Materials;2000-12
4. Low cycle fatigue behaviour in vacuum of a 316L-type austenitic stainless steel between 20 and 600°C—Part II: Dislocation structure evolution and correlation with cyclic behaviour;Materials Science and Engineering: A;1997-06
5. Normative issues in thermal fatigue design of nuclear components;Nuclear Engineering and Design;1995-09
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