articleTop 1% cited
Fatigue life improvement through surface nanostructuring of stainless steel by means of surface mechanical attrition treatment
Scripta Materialia · 2006 · Vol. 54(11) · pp. 1949–1954
T. Roland(Laboratoire des Systèmes Mécaniques et d'Ingénierie Simultanée)Delphine Retraint(Université de Technologie de Troyes)K. Lu(Chinese Academy of Sciences)Jian Lü✉(Laboratoire des Systèmes Mécaniques et d'Ingénierie Simultanée)
Surface Treatment and Residual StressErosion and Abrasive MachiningMicrostructure and mechanical propertiesMaterials scienceNanocrystalline materialAnnealing (glass)MetallurgyAttritionSurface layerGrain boundaryGrain sizeComposite materialLayer (electronics)
Funding
- Ministry of Science and Technology of the People's Republic of China
Citations
510
FWCI
20.39
field-weighted impact
References
21
Percentile
100%
vs. same field & year
Citations per year
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References
Tensile properties of a nanocrystalline 316L austenitic stainless steel
Scripta Materialia · 2005 · 491 citations
An investigation of surface nanocrystallization mechanism in Fe induced by surface mechanical attrition treatment
Acta Materialia · 2002 · 981 citations
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