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Influence of Electrolyte Temperature on Morphology and Properties of Composite Anodic Film on Titanium Alloy Ti-10V-2Fe-3Al

机译:电解液对钛合金Ti-10V-2F-3钛复合阳极膜形态及性能的影响

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In this study, we introduced a novel environmentally-friendly electrolyte consisting of polytetrafluoroethylene (PTFE) nanoparticles and malic acid solution to fabricate composite anodic film on Ti-10V-2Fe-3Al alloy at different electrolyte temperatures. The morphology revealed that the PTFE nanoparticles were successfully incorporated into composite anodic films and embedded preferentially in the pores and cracks. Their performances (wear, corrosion and hydrophobicity) were evaluated via electrochemical tests, ball on disc tests, and a contact angle (CA) meter. Compared to the substrate of titanium alloy Ti-10V-2Fe-3Al, the composite anodic films exhibited the low wear rates, high corrosion resistance and good hydrophobicity. However, the microstructure and morphology of the films were affected by the electrolyte temperature. As a result, their performances were changed greatly as a function of the temperature and the film fabricated at 20 °C exhibited better performances (CA = 131.95, icorr = 6.75 × 10?8 A·cm?2, friction coefficient = 0.14) than those at other electrolyte temperatures. In addition, the corresponding lubrication mechanism of the composite anodic films was discussed.
机译:在本研究中,我们介绍了一种由聚四氟乙烯(PTFE)纳米颗粒和苹果酸溶液组成的新型环保电解质,以在不同电解质温度下制造在Ti-10V-2Fe-3Al合金上的复合阳极膜。形态显示,PTFE纳米颗粒成功掺入复合阳极膜中,并优先于孔隙和裂缝中嵌入。通过电化学测试,圆盘测试和接触角(CA)仪表,评估它们的性能(磨损,腐蚀和疏水性)。与钛合金Ti-10V-2F-3的基材相比,复合阳极膜表现出低磨损率,高耐腐蚀性和良好的疏水性。然而,薄膜的微观结构和形态受电解质温度的影响。结果,它们的性能随着温度的函数而变化,并且在20℃下制造的膜表现出更好的性能(Ca = 131.95,iCorr = 6.75×10?8a·cm?2,摩擦系数= 0.14)那些在其他电解质温度。另外,讨论了复合阳极膜的相应润滑机构。

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