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Original Articles

A New Approach to The Oxidational Theory of Mild Wear

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Pages 71-75 | Published online: 25 Mar 2008

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J.A. Davidson & A.K. Mishra. (1992) SURFACE MODIFICATION ISSUES FOR ORTHOPAEDIC IMPLANT BEARING SURFACES. Materials and Manufacturing Processes 7:3, pages 405-421.
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Hyun-Soo Hong. (1992) Effect of Deaeration and Controlled Environments on the Performance of Lubricants. Tribology Transactions 35:2, pages 381-385.
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Articles from other publishers (33)

Yu Shinohara, Jae-Hyeok Park, Takeshi Hagio, Jae-Il Kim, Woo-Young Lee, Noritsugu Umehara & Ryoichi Ichino. (2023) An effective strategy for improving the performance of electrodeposited Fe-W alloy plating: Tailoring microstructure by graphene incorporation. Materials & Design 230, pages 111938.
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Jae-Il Kim, Woo-Young Lee, Takayuki Tokoroyama & Noritsugu Umehara. (2023) Superlubricity with Graphitization in Ti-Doped DLC/Steel Tribopair: Response on Humidity and Temperature. ACS Applied Materials & Interfaces 15:15, pages 19715-19729.
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Chuchu Zhang & Richard W. Neu. (2023) Temperature-frequency wear mechanism maps for a heat-resistant austenitic stainless steel. Wear, pages 204844.
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Jae-Il Kim, Woo-Young Lee, Takayuki Tokoroyama, Motoyuki Murashima & Noritsugu Umehara. (2023) Tribo-chemical wear of various 3d-transition metals against DLC: Influence of tribo-oxidation and low-shear transferred layer. Tribology International 177, pages 107938.
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Hubert Kuszewski, Mirosław Jakubowski, Artur Jaworski, Janusz Lubas & Krzysztof Balawender. (2021) Effect of temperature on tribological properties of 1-butanol–diesel fuel blends – Preliminary experimental study using the HFRR method. Fuel 296, pages 120700.
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Julia S. Lehmann, Ruth Schwaiger, Monika Rinke & Christian Greiner. (2020) How Tribo‐Oxidation Alters the Tribological Properties of Copper and Its Oxides. Advanced Materials Interfaces 8:1, pages 2001673.
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Bikramjit Basu, Mitjan Kalin & B. Venkata Manoj Kumar. 2020. Friction and Wear of Ceramics. Friction and Wear of Ceramics 155 184 .
Deepak Kumar, K. P. Lijesh & Kuriachen P. K. Basil. Investigation on the impact of electrical discharge machining on the tribological properties of aluminum. Investigation on the impact of electrical discharge machining on the tribological properties of aluminum.
Hubert Kuszewski. (2018) Physical and Chemical Properties of 1-Butanol–Diesel Fuel Blends. Energy & Fuels 32:11, pages 11619-11631.
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Alixe Dréano, Siegfried Fouvry & Gaylord Guillonneau. (2018) A tribo-oxidation abrasive wear model to quantify the wear rate of a cobalt-based alloy subjected to fretting in low-to-medium temperature conditions. Tribology International 125, pages 128-140.
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Hubert Kuszewski, Artur Jaworski & Adam Ustrzycki. (2017) Lubricity of ethanol–diesel blends – Study with the HFRR method. Fuel 208, pages 491-498.
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Wojciech Żurowski, Katarzyna Brzózka & Bogumił Górka. (2013) Analysis of surface layers and wear products by Mössbauer spectral analysis. Wear 297:1-2, pages 958-965.
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A. Hassani, A. Habibolahzadeh & S. Sadeghinejad. (2012) Comparison of Microstructural and Tribological Effects of Low Vanadium-Low Titanium Additions to a Gray Cast Iron. Journal of Materials Engineering and Performance 22:1, pages 267-282.
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Bikramjit Basu & Mitjan Kalin. 2011. Tribology of Ceramics and Composites. Tribology of Ceramics and Composites 70 100 .
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Nagaraj Chelliah & Satish V. Kailas. (2009) Synergy between tribo-oxidation and strain rate response on governing the dry sliding wear behavior of titanium. Wear 266:7-8, pages 704-712.
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C. Rodenburg & W.M. Rainforth. (2007) A quantitative analysis of the influence of carbides size distributions on wear behaviour of high-speed steel in dry rolling/sliding contact. Acta Materialia 55:7, pages 2443-2454.
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Hon So, Mathias Woydt, Zygmunt Rymuza, Czeslaw Kajdas, Michael Furey, Joz¡e Viz¡intin, Wilfred Tysoe, Peter Kotvis, Ilia Buyanovsky, Zinaida Ignatieva, Ruvim Zaslavsky, Matgorzata Ziomek-Moroz, Jeffrey Hawk, Einar Bardal & Asgeir Bardal. 2004. Surface Modification and Mechanisms. Surface Modification and Mechanisms.
W.M. Rainforth, A.J. Leonard, C. Perrin, A. Bedolla-Jacuinde, Y. Wang, H. Jones & Q. Luo. (2002) High resolution observations of friction-induced oxide and its interaction with the worn surface. Tribology International 35:11, pages 731-748.
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Hyun-Soo Hong. (2002) The role of atmospheres and lubricants in the oxidational wear of metals. Tribology International 35:11, pages 725-729.
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Jen Fin Lin & Chau Chang Chou. (2002) The response surface method and the analysis of mild oxidational wear. Tribology International 35:11, pages 771-785.
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H So, D.S Yu & C.Y Chuang. (2002) Formation and wear mechanism of tribo-oxides and the regime of oxidational wear of steel. Wear 253:9-10, pages 1004-1015.
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M.Z. Huq & J.-P. Celis. (2002) Expressing wear rate in sliding contacts based on dissipated energy. Wear 252:5-6, pages 375-383.
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Jong-Ning Aoh & Jian-Cheng Chen. (2001) On the wear characteristics of cobalt-based hardfacing layer after thermal fatigue and oxidation. Wear 250:1-12, pages 611-620.
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Junguo Xu & Koji Kato. (2000) Formation of tribochemical layer of ceramics sliding in water and its role for low friction. Wear 245:1-2, pages 61-75.
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Chau Chang Chou & Jen Fin Lin. (1999) Application of the Response Surface Method to the Tribological Analysis of a Medium-Carbon Steel Under Mild-Oxidational Wear. Journal of Tribology 121:1, pages 185-197.
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T.F.J. Quinn. (1996) Computational methods applied to oxidational wear. Wear 199:2, pages 169-180.
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Jen Fin Lin, Chau Chang Chou & Jeng Woei Yang. (1996) Thermal Analysis of a Medium-Carbon Steel Tribo-System and Its Application to Oxidational Wear. Journal of Tribology 118:4, pages 728-739.
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H. So. (1995) The mechanism of oxidational wear. Wear 184:2, pages 161-167.
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Horst Czichos & Karl-Heinz HabigHorst Czichos & Karl-Heinz Habig. 1992. Tribologie-Handbuch. Tribologie-Handbuch 100 144 .
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Michael N. Gardos. (2011) The Tribooxidative Behavior of Rutile-Forming Substrates. MRS Proceedings 140.
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