Oxidation Resistant Ce-modified Silicide Coatings Prepared on Ti–6Al–4V Alloy by Pack Cementation Process

Xuan Li1, Jiemo Tian, Wenhuai Tian, Xiulan Li2, Weihong Xie2
1Material Corrosion and Protection Key Laboratory of Sichuan Province, Zigong, China
2College of Mechanical Engineering, Sichuan University of Science and Engineering, Zigong, China

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K. Lu, The future of metals. Science 328, 2010 (319–320).

Z. Tarzimoghadam, S. Sandlöbes, K. G. Pradeep and D. Raabe, Microstructure design and mechanical properties in a near-α Ti–4Mo alloy. Acta Materialia 97, 2015 (291–304).

J. J. Dai, J. Y. Zhu, C. Z. Chen and F. Weng, High temperature oxidation behavior and research status of modifications on improving high temperature oxidation resistance of titanium alloys and titanium aluminides: a review. Journal of Alloys and Compounds 685, 2016 (784–798).

Y. Q. Fu, N. L. Loh, A. W. Batchelor and K. W. Xu, Improvement in fretting wear and fatigue resistance of Ti–6Al–4V by application of several surface treatments and coatings. Surface and Coatings Technology 106, 1998 (193–197).

R. Pflumm, S. Friedle and M. Schütze, Oxidation protection of γ-TiAl-based alloys (A review). Intermetallics 56, 2015 (1–14).

Y. M. Wang, H. Tian, L. X. Guo, J. H. Ouyang, Y. Zhou and D. C. Jia, Amorphous AlPO4 coating formed on titanium alloy for high temperature oxidation protection: oxidation kinetics and microstructure. Surface and Coatings Technology 15, 2014 (134–141).

A. S. Ulrich and M. C. Galetz, Protective aluminide coatings for refractory metals. Oxidation of Metals 86, 2016 (511–535).

W. Zhou, Y. G. Zhao, W. Li, B. Tian, S. W. Hu and Q. D. Qin, Oxidation behavior of the Y2O3-modified aluminide coating on Ti–6Al–4V alloy. Materials Science and Engineering A 458, 2007 (34).

B. V. Cockeram, Growth and oxidation resistance of boron-modified and germanium doped silicide diffusion coatings formed by the halide-activated pack cementation method. Surface and Coatings Technology 76–77, 1995 (20–27).

Z. D. Xiang, S. R. Rose and J. S. B. Gray, Co-deposition of aluminide and silicide coatings on γ–Ti–Al by pack cementation process. Journal of Materials Science 38, 2003 (19–28).

B. V. Cockeram and R. A. Rapp, The kinetics of multilayered titanium-silicide coatings grown by the pack cementation method. Metallurgical and Materials Transactions A 26, 1995 (777–791).

H. P. Xiong, W. Mao, Y. H. Xie, Y. Y. Cheng and X. H. Li, Formation of silicide coatings on the surface of a TiAl-based alloy and improvement in oxidation resistance. Materials Science and Engineering A 391, 2005 (10–18).

S. Sharma, Wear study of Ni–WC composite coating modified with CeO2. The International Journal of Advanced Manufacturing Technology 61, 2012 (889–900).

R. Thanneeru, S. Patil, S. Deshpande and S. Seal, Effect of trivalent rare earth dopants in nanocrystalline ceria coatings for high-temperature oxidation resistance. Acta Materialia 55, 2007 (3457–3466).

S. C. Kung and A. R. Robert, Analyses of the gaseous species in halide-activated cementation coating packs. Oxidation of Metals 32, 1989 (89–109).

T. Yamane, Y. Fujiishi, H. Araki, et al., Phase diagrams of the Ti–Si system under high pressure. Journal of Materials Science Letters 13, 1994 (200–202).

Z. D. Xiang and P. K. Datta, Relationship between pack chemistry and aluminide coating formation for low-temperature aluminisation of alloy steels. Acta Materialia 54, 2006 (4453–4463).

G. M. Crosbie, Chemical diffusivity and electrical conductivity in TiO2, containing a submicron dispersion of SiO2. Journal of Solid State Chemistry 25, 1978 (367–378).