Several aspects of the temperature history in relation to the cyclic behaviour of an austenitic stainless steel
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference27 articles.
1. 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
2. Viscoplastic Behavior and Modelization of an Austenitic Stainless Steel (17-12 SPH) at High Temperature (T = 600°C), Under In and Out of Phase Cyclic Tension-Torsion Loading
3. Fatigue, Cyclic Deformation and Microstructure. Cyclic Deformation and Fatigue of Selected Ferritic and Austenitic Steels: Specific Aspects.
4. Some aspects of thermomechanical fatigue of AISI 304L stainless steel: Part I. creep- fatigue damage
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1. Deformation and damage assessment in type 316 LN stainless steel weld joint under isothermal and thermomechanical cyclic loading;Materials Science and Engineering: A;2022-08
2. Study on serration flow and dynamic strain aging of Cr–Ti–B low-carbon steel;Journal of Materials Research and Technology;2021-05
3. Cyclic hardening and dynamic strain aging during low-cycle fatigue of Cr-Mo tempered martensitic steel at elevated temperatures;Materials Science and Engineering: A;2018-09
4. Assessment of surface relief and short cracks under cyclic creep in a type 316LN austenitic stainless steel;Philosophical Magazine;2015-11-17
5. Comparison of Damage Evolution in Different Steels by Means of 3D X Ray Tomography;steel research international;2015-06-15
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