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Nature materials, ISSN 1476-1122, 01/2018, Volume 17, Issue 1, pp. 63 - 71
Many traditional approaches for strengthening steels typically come at the expense of useful ductility, a dilemma known as strength-ductility trade-off. New... 
Grain boundaries | Cellular manufacture | Ductility | Stainless steel | Austenitic stainless steels | Twinning | Dislocation pinning | Metallurgy | High strength | Microstructure | Cellular structure | Elongation | Mechanical properties | Mechanical engineering | MATERIALS SCIENCE
Journal Article
Journal Article
1986, ISBN 9789170322440, Volume Ny serie, Nr. 570., 1 v. (various pagings)
Book
Wear, ISSN 0043-1648, 04/2017, Volume 376-377, Issue PB, p. 1298
Journal Article
Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science, ISSN 1073-5615, 12/2018, Volume 49, Issue 6, pp. 3043 - 3055
Journal Article
Materials Science & Engineering A, ISSN 0921-5093, 08/2015, Volume 641, pp. 290 - 296
Journal Article
Materials Science & Engineering A, ISSN 0921-5093, 11/2013, Volume 584, pp. 14 - 20
Journal Article
Modelling and Simulation in Materials Science and Engineering, ISSN 0965-0393, 2013, Volume 21, Issue 8, pp. 85004 - 15
The degradation of austenitic stainless steels in a radiation environment is a known problem for the in-core components of nuclear light water reactors. For a... 
EMBEDDED-ATOM METHOD | MONTE-CARLO | PHYSICS, APPLIED | SELF-DIFFUSION | EVOLUTION | FE-NI-CR | MATERIALS SCIENCE, MULTIDISCIPLINARY | AUSTENITIC ALLOY | DYNAMICS | IRON | SIMULATIONS | LATTICE | Degradation | Computer simulation | Simulation | Austenitic stainless steels | Light water reactors | Ferrous alloys | Mathematical models | Heat resistant steels | Models | Modelling | Alloy steels
Journal Article
Journal of Materials Science, ISSN 0022-2461, 07/2018, Volume 53, Issue 14, pp. 10457 - 10468
Journal Article
Metallurgical and Materials Transactions A, ISSN 1073-5623, 3/2009, Volume 40, Issue 3, pp. 729 - 744
Journal Article
Journal Article
Acta Materialia, ISSN 1359-6454, 2016, Volume 111, p. 39
We measure the stacking fault energy of a set of 20 at% Cr-austenitic stainless steels by means of transmission electron microscopy using the weak beam dark... 
Fysik | Stacking fault energy; Austenitic steel; Plasticity; Transmission electron microscopy; Density functional theory | Physical Sciences | Naturvetenskap | Natural Sciences
Journal Article
International Journal of Fatigue, ISSN 0142-1123, 02/2017, Volume 95, pp. 120 - 131
In the present study, the effect of deep rolling on the fatigue behavior of two austenitic stainless steels susceptible to strain hardening (AISI 304 and AISI... 
Austenitic stainless steel | AISI 304 | Fatigue strength | Deep rolling | AISI 316 | SAE-1045 STEEL | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | STRENGTH | PARAMETERS | RESIDUAL-STRESS STABILITY | DEFORMATION | ENGINEERING, MECHANICAL | SURFACE | Fatigue | Fatigue testing machines | Steel, Stainless | Materials
Journal Article