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Thermal Oxidation of Cold Sprayed Titanium-Based Coating Deposited on Co-Cr Alloy

机译:CO-CR合金沉积冷喷涂钛涂层的热氧化

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This study focuses on the surface modification of a medical grade Co-Cr alloy via combining cold spray and thermal oxidation processes. After deposition of a Ti96-Al4 (wt.%) coating, samples were oxidized at 600 degrees C for 60h in air. Oxidation transformed the coating into a dual-layered structure comprising an outer oxide layer (mainly rutile) with a diffusion layer (mainly oxygen enriched titanium and Ti-Al intermetallics) beneath it. Formation of new phases made the diffusion layer brittle and prone to fracture during pull out tests. Scratch and Rockwell-C tests confirmed good adhesion between the oxide and underlying diffusion layers, having average hardness as 1297 HV and 387 HV, respectively. The dual-layer coating exhibited excellent wear performance in a 0.9wt.% NaCl solution against sliding action of alumina ball as compared to Co-Cr substrate, especially at contact pressures1200MPa, while the maximum in vivo contact pressure is15MPa for load-bearing orthopedic implants. Furthermore, the release of the aluminum from the dual-layer coating into 0.9wt.% NaCl solution is lower than the permissible limit stated by the International Agency for Research on Cancer.
机译:该研究专注于通过组合冷喷雾和热氧化过程的医用级CO-CR合金的表面改性。在沉积Ti96-Al4(重量%)涂层后,在空气中以600℃氧化样品60h。氧化将涂层转化为双层结构,所述双层结构包括外氧化物层(主要是金红石),其在其下方具有扩散层(主要是富氧钛和Ti-Al金属间质)。形成新阶段使扩散层脆弱,在拉出试验期间易于断裂。划痕和罗克韦尔-C测试证实氧化物和下面扩散层之间的良好粘附,分别具有平均硬度为1297 HV和387HV。与CO-CR基板相比,双层涂层在0.9wt中的磨损性能下表现出优异的磨损性能。与CO-CR基板相比,氧化铝球的滑动作用,尤其是接触压力,而载荷的最大值是最大的载荷。 - 抱着骨科植入物。此外,从双层涂层释放到0.9wt中。%NaCl溶液低于国际癌症研究机构所例句的允许极限。

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