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Technology Update

Kolsterising: hardening of austenitic stainless steel

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Pages 412-414 | Published online: 19 Jul 2013

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H Kahn, A H Heuer, G M Michal, F Ernst, R Sharghi-Moshtaghin, Y Ge, P M Natishan, R J Rayne & F J Martin. (2012) Interstitial hardening of duplex 2205 stainless steel by low temperature carburisation: enhanced mechanical and electrochemical performance. Surface Engineering 28:3, pages 213-219.
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H Dong. (2010) S-phase surface engineering of Fe-Cr, Co-Cr and Ni-Cr alloys. International Materials Reviews 55:2, pages 65-98.
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D. Hertz, J. P. Lebrun & H. Michel. (2008) Technologies for low temperature carburising and nitriding of austenitic stainless steel. International Heat Treatment and Surface Engineering 2:1, pages 32-38.
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T. Bell. (2007) Current status of supersaturated surface engineered S phase materials. International Heat Treatment and Surface Engineering 1:4, pages 148-151.
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Articles from other publishers (13)

A. Bauer & K. Schreiner. (2021) Dimensional Stability of Low Temperature Surface Hardened Stainless Steel Components*. HTM Journal of Heat Treatment and Materials 77:1, pages 16-28.
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H.Y. Liu, H.L. Che, G.B. Li & M.K. Lei. (2021) Low-pressure hollow cathode plasma source carburizing technique at low temperature. Surface and Coatings Technology 422, pages 127511.
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О.С. Чибухчян & H.S. Chibukhchyan. (2020) ПОВЫШЕНИЕ ПРОЧНОСТИ ДЕТАЛЕЙ ЛЕТАТЕЛЬНЫХ АППАРАТОВ НА ОСНОВЕ ТЕХНОЛОГИИ ОБРАБОТКИ УЛЬТРАЗВУКОМINCREASING STRENGTH OF AIRCRAFT PARTS BASED ON ULTRASOUND PROCESSING TECHNOLOGY. Транспорт: наука, техника, управление:10, pages 58-61.
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Xiao Tao, Xingguang Liu, Allan Matthews & Adrian Leyland. (2019) The influence of stacking fault energy on plasticity mechanisms in triode-plasma nitrided austenitic stainless steels: Implications for the structure and stability of nitrogen-expanded austenite. Acta Materialia 164, pages 60-75.
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K.H. Lo, C.T. Kwok, K.Y. Wang & Wenji Ai. (2017) Implications of solution treatment on cavitation erosion and corrosion resistances and synergism of austenitic stainless steel. Wear 392-393, pages 159-166.
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D.S. Rong, J.M. Gong & Y. Jiang. (2015) Thermodynamic Simulation of Low Temperature Colossal Carburization of Austenitic Stainless Steel. Procedia Engineering 130, pages 676-684.
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S. K. Balijepalli, L. Ceschini, C. Chiavari, S. Kaciulis, C. Martini, A. Mezzi, R. Montanari & G. Verona Rinati. (2014) Corrosion effect to the surface of stainless steel treated by two processes of low temperature carburization. Surface and Interface Analysis 46:10-11, pages 731-734.
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L. Ceschini, C. Chiavari, A. Marconi & C. Martini. (2013) Influence of the countermaterial on the dry sliding friction and wear behaviour of low temperature carburized AISI316L steel. Tribology International 67, pages 36-43.
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I. Boromei, L. Ceschini, A. Marconi & C. Martini. (2013) A duplex treatment to improve the sliding behavior of AISI 316L: Low-temperature carburizing with a DLC (a-C:H) topcoat. Wear 302:1-2, pages 899-908.
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P.M. Natishan, R.A. Bayles, R. Rayne, T. Longazel, F.J. Martin, H. Kahn & A.H. Heuer. (2012) Interstitial Hardening of Type 316L Stainless Steel to Improve Corrosion Resistance and Mechanical Properties. CORROSION 68:7, pages 638-644.
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Dennis Formosa, Ralph Hunger, André Spiteri, Hanshan Dong, Emmanuel Sinagra & Joseph Buhagiar. (2012) Corrosion behaviour of carbon S-phase created on Ni-free biomedical stainless steel. Surface and Coatings Technology 206:16, pages 3479-3487.
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N.G. Jones, C.M. Ward-Close, P.M. Brown & D. Dye. (2010) An evaluation of the tensile properties of a supersaturated carbon layer via in situ synchrotron diffraction. Scripta Materialia 63:1, pages 85-88.
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Thomas Bell. (2008) Current Status of Supersaturated Surface Engineered S-Phase Materials. Key Engineering Materials 373-374, pages 289-295.
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