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Strengthening mechanism and hydrogen-induced crack resistance of AISI 316L stainless steel subjected to laser peening at different power densities Huang S, Yuan G, Sheng J, Tan WS, Agyenim-Boateng E, Zhou JZ, Guo HF International Journal of Hydrogen Energy, 43(24), 11263, 2018 |
2 |
The effect of surface enriched chromium and grain refinement by ball milling on corrosion resistance of 316L stainless steel Lv JL, Yang M, Miura H, Liang TX Materials Research Bulletin, 91, 91, 2017 |
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Electrochemical characterization of atomic layer deposited Al2O3 coatings on AISI 316L stainless steel Fedel M, Deflorian F Electrochimica Acta, 203, 404, 2016 |
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Surface modification of biomedical AISI 316L stainless steel with zirconium carbonitride coatings Wang L, Zhao X, Ding MH, Zheng H, Zhang HS, Zhang B, Li XQ, Wu GY Applied Surface Science, 340, 113, 2015 |
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Properties of the Passive Film Formed on Interstitially Hardened AISI 316L Stainless Steel Niu W, Lillard RS, Li Z, Ernst F Electrochimica Acta, 176, 410, 2015 |
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Explosive consolidation of 316L stainless steel powder - Effect of phase composition Farinha AR, Vieira MT, Mendes R Advanced Powder Technology, 25(5), 1469, 2014 |
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Surface properties of nitrided layer on AISI 316L austenitic stainless steel produced by high temperature plasma nitriding in short time Li Y, Wang Z, Wang L Applied Surface Science, 298, 243, 2014 |
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Fine structure analysis of biocompatible ceramic materials based hydroxyapatite and metallic biomaterials 316L Anghelina FV, Ungureanu DN, Bratu V, Popescu IN, Rusanescu CO Applied Surface Science, 285, 65, 2013 |
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Effects of surface mechanical attrition treatment (SMAT) on a rough surface of AISI 316L stainless steel Arifvianto B, Suyitno, Mahardika M Applied Surface Science, 258(10), 4538, 2012 |
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Effect of surface mechanical attrition treatment (SMAT) on microhardness, surface roughness and wettability of AISI 316L Arifvianto B, Suyitno, Mahardika M, Dewo P, Iswanto PT, Salim UA Materials Chemistry and Physics, 125(3), 418, 2011 |