Effect of Thermal Oxidation Duration on Fretting Wear Behavior of Ti6Al4V in Ringer's Solution
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s12666-022-02543-3.pdf
Reference29 articles.
1. Bloyce A, Qi P Y, Dong H and Bell T, Surf Coat Technol 107 (1998) 125.
2. Budinski K G, Wear 151 (1991) 203.
3. Fu Y, Loh N L, Batchelor A W, Liu D, Zhu X, He J and Xu K, Surf Coat Technol 106 (1998) 193.
4. Borgioli F, Galvanetto E, Iozzelli F and Pradelli G, Mater Lett 59 (2005) 2159.
5. Kumar S A, Sundar R, Raman S G S, Kumar H, Gnanamoorthy R, Kaul R, Ranganathan K, Oak S M and Kukreja L M, Tribol Trans 5 (2012) 615.
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1. In Situ XPS Analysis of Tribo-chemical Behavior in Titanium Alloy Exposed to Fretting Wear Under the Vacuum Environments;Tribology Letters;2024-03-22
2. The synergetic effect of micro-blasting and thermal oxidation on the corrosion performance of Ti6Al4V;Surface and Coatings Technology;2023-08
3. High Temperature Sliding Wear Behaviour of Ti6Al4V Thermal Oxidised for Different Oxidation Durations;Metals and Materials International;2022-06-06
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