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Articles

Oxidation behaviour of Ti6Al4V titanium alloy in oxygen

Pages 111-114 | Published online: 19 Jul 2013

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B J Dinan, S A Dregia & S A Akbar. (2013) Growth of coaxial nanowires by thermal oxidation of Ti64 alloy. Materials Technology 28:5, pages 280-285.
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Teng Yang, Mangesh V. Pantawane, Yuqi Jin, Narendra B. Dahotre & Arup Neogi. (2024) Non-destructive evaluation of bulk material zones and interfaces in powder bed fusion additive manufactured Ti6Al4V. Materials Science and Engineering: A 891, pages 145951.
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Zhenxue Zhang, Rui Deng & Hanshan Dong. (2023) Ceramic Conversion Treatment of Commercial Pure Titanium with a Pre-Deposited Vanadium Layer. Metals 13:11, pages 1859.
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M. Siblani, M. Ollivier, L. Favergeon & P. Chartrand. (2023) Experimental and thermodynamic modeling of Al2O3 corundum and TiO2 rutile structures forming on Ti-6Al-4V powder during oxidation. Acta Materialia 256, pages 119037.
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Nicholas Derimow, Elisabeth Mansfield, Jason Holm & Nikolas Hrabe. (2023) Additive manufacturing titanium powder oxygen variation within a single powder bed due to differences in powder size and oxygen content. Additive Manufacturing Letters 5, pages 100125.
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L. Bolzoni, J. Hu, F. Yang, M. Zhang, J. Li & Z. Lu. (2022) Kinetics of oxidation of Fe-bearing powder metallurgy Ti alloys. Journal of Alloys and Compounds 906, pages 164332.
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Lamiaa Z. Mohamed, S. S. Abd Elmomen & Shimaa El-Hadad. (2022) Influence of the oxidation behavior of Ti–6Al–4V alloy in dry air on the oxide layer microstructure. Chemical Papers 76:3, pages 1627-1638.
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Nicholas Derimow & Nikolas Hrabe. (2021) Oxidation in Reused Powder Bed Fusion Additive Manufacturing Ti-6Al-4V Feedstock: A Brief Review. JOM 73:11, pages 3618-3638.
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B. N. Mordyuk, S. M. Voloshko, V. I. Zakiev, A. P. Burmak & V. V. Mohylko. (2021) Enhanced Resistance of Ti6Al4V Alloy to High-Temperature Oxidation and Corrosion by Forming Alumina Composite Coating. Journal of Materials Engineering and Performance 30:3, pages 1780-1795.
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Zhenxue Zhang, Yuejiao Zhang, Xiaoying Li, James Alexander & Hanshan Dong. (2020) An enhanced ceramic conversion treatment of Ti6Al4V alloy surface by a pre-deposited thin gold layer. Journal of Alloys and Compounds 844, pages 155867.
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Jesús A. Sandoval-Robles, Ciro A. Rodríguez & Erika García-López. (2020) Laser Surface Texturing and Electropolishing of CoCr and Ti6Al4V-ELI Alloys for Biomedical Applications. Materials 13:22, pages 5203.
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Berend Denkena, Marc André Dittrich, Alexander Krödel, Sebastian Worpenberg, Jonas Matthies & Florian Schaper. (2020) Wear Behaviour of Coated Cemented Carbide Inserts in an Oxygen-Free Atmosphere when Machining Ti-6Al-4V. Defect and Diffusion Forum 404, pages 28-35.
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Yong-Deok Im & Young-Kook Lee. (2020) Effects of Mo concentration on recrystallization texture, deformation mechanism and mechanical properties of Ti–Mo binary alloys. Journal of Alloys and Compounds 821, pages 153508.
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Mohamad Mahdi Siblani, Maelig Ollivier & Loïc Favergeon. (2020) An experimental study of Ti-6Al-4V powder reactivity in gaseous environment: Application to additive manufacturing. MATEC Web of Conferences 321, pages 03035.
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Kellen D. Traxel & Amit Bandyopadhyay. (2020) Influence of in situ ceramic reinforcement towards tailoring titanium matrix composites using laser-based additive manufacturing. Additive Manufacturing 31, pages 101004.
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G. Fargas, J.J. Roa, B. Sefer, R. Pederson, M.-L. Antti & A. Mateo. (2018) Influence of cyclic thermal treatments on the oxidation behavior of Ti-6Al-2Sn-4Zr-2Mo alloy. Materials Characterization 145, pages 218-224.
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Y.-D. Im, H.-G. Kim, Y.-K. Lee & K.-H. Song. (2018) Effect of Deformation Twinning in Metastable β-Type Ti-15Mo Alloys. JOM 70:11, pages 2582-2589.
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P. Samimi & P.C. Collins. (2016) Oxidation behavior of binary Ti-xW (0 ≤ x ≤ 30, wt%) alloys at 650 °C as a function of W concentration. Corrosion Science 111, pages 531-540.
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P. Samimi, Y. Liu, I. Ghamarian & P.C. Collins. (2014) A novel tool to assess the influence of alloy composition on the oxidation behavior and concurrent oxygen-induced phase transformations for binary Ti–xMo alloys at 650°C. Corrosion Science 89, pages 295-306.
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S. Z. Zhang, B. Zhou, N. Liu & L. Q. Chen. (2013) Effects of Microstructure and Rare-Earth Constituent on the Oxidation Behavior of Ti–5.6Al–4.8Sn–2Zr–1Mo–0.35Si–0.7Nd Titanium Alloy. Oxidation of Metals 81:3-4, pages 373-382.
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A. Ebach-Stahl, C. Eilers, N. Laska & R. Braun. (2013) Cyclic oxidation behaviour of the titanium alloys Ti-6242 and Ti-17 with Ti–Al–Cr–Y coatings at 600 and 700°C in air. Surface and Coatings Technology 223, pages 24-31.
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Dominique Poquillon, Claude Armand & Julitte Huez. (2013) Oxidation and Oxygen Diffusion in Ti–6al–4V Alloy: Improving Measurements During Sims Analysis by Rotating the Sample. Oxidation of Metals 79:3-4, pages 249-259.
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Abhishek Tewari. (2012) Load dependence of oxidative wear in metal/ceramic tribocouples in fretting environment. Wear 289, pages 95-103.
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A. Galdikas, Jean Paul Rivière, T. Moskalioviene & L. Pichon. (2010) Analysis of Component Depth Profiles at the Interface of Ti6242 Alloy and SiC, SiN Coatings after High Temperature Oxidation in Air. Defect and Diffusion Forum 297-301, pages 433-438.
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J.P. Rivière, L. Pichon, M. Drouet, D. Poquillon & A. Galdikas. (2007) Silicon based coatings deposited by dynamic ion mixing for oxidation protection of a Ti6242 alloy. Surface and Coatings Technology 201:19-20, pages 8343-8347.
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Ho Sung Lee, Jong Hoon Yoon & Yeong Moo Yi. (2007) A Study on High Temperature Oxidation of Titanium Alloys in Solid State Bonding Process. Materials Science Forum 544-545, pages 183-186.
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Ho-Sung Lee, Jong-Hoon Yoon & Yeong-Moo Yi. (2007) Oxidation behavior of titanium alloy under diffusion bonding. Thermochimica Acta 455:1-2, pages 105-108.
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J.P. Rivière, L. Pichon, M. Drouet, A. Galdikas & D. Poquillon. (2006) Silicon based oxidation-resistant coatings on Ti6242 alloy by dynamic ion mixing. Surface and Coatings Technology 200:18-19, pages 5498-5504.
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C. Schuman, E. Lenarduzzi, S. Weber, M.J. Philippe, D. Petelot & P. Bounie. (2006) Modelling the oxygen diffusion profile in TA3V and T40 during heat-treatment under air between 620 and 850 °C. Surface and Coatings Technology 200:14-15, pages 4572-4578.
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S.K. Sahay, S.K. Singh, B. Goswami & A.K. Ray. (2006) STUDIES OF OXIDATION BEHAVIOR IN TI-BASE ALLOYS. Corrosion Reviews 24:5-6.
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E. Lenarduzzi, P. Bounie, C. Schuman, M.‐J. Philippe & D. Petelot. (2003) Titanium Oxidation During Thermal Treatment: Inhibiting Role of Nitrogen and Epitaxial Orientation Relations Evidenced by EBSD. Advanced Engineering Materials 5:8, pages 587-593.
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