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首页> 外文期刊>Journal of Materials Engineering and Performance >Controlled Fabrication of Nanoporous Anodic Titania Films on Ti-6Al-4V Alloy for Enhanced Self-Lubricating Properties by Combining Spark Anodization and Electropulse-Assisted Ultrasonic Rolling
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Controlled Fabrication of Nanoporous Anodic Titania Films on Ti-6Al-4V Alloy for Enhanced Self-Lubricating Properties by Combining Spark Anodization and Electropulse-Assisted Ultrasonic Rolling

机译:通过结合火花阳极氧化和电散辅助超声轧制来控制Ti-6Al-4V合金纳米多孔阳极二氧化钛膜的制造,提高自润滑性能

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We report the fabrication of self-lubricating nanoporous anodic titania films through spark anodization in an aqueous ammonia sulfate electrolyte on a hardened nanocrystalline layer of Ti-6Al-4V rods after electropulse-assisted ultrasonic surface rolling process (EP-USRP). The spark anodization with an optimum anodizing voltage of 130 V produced sponge-like nanoporous anodic titania films with stable crystalline structure of rutile-phase TiO2, and the EP-USRP resulted in a nanocrystalline layer with a higher surface hardening depth (> 220 mu m) through severe plastic deformation. The combinatorial technique resulted in excellent tribological properties, with lower friction coefficient of similar to 0.72 (compared to EP-USRP of similar to 0.80), smoother wear scar with less adhesion and less wear loss (maximum depth of 12 nm, 33.3% lower than the EP-USRP sample). These enhancements are attributed to the synergetic effect of the self-lubricating nanoporous anodic titania films formed by spark anodization (which acted as transition layer and prevented direct contact between the counter materials and the substrate) and the hardened nanocrystalline layer formed by EP-USRP (which slowed down the consumption of the anodic powder).
机译:我们通过在电催化超声波表面轧制过程(EP-USRP)之后,通过在Ti-6Al-4V棒的硬化纳米晶体层中的氨硫酸盐电解质中的火花阳极氧化通过火花阳极氧化来制造自润滑纳米多孔阳极二氧化钛膜。具有130V的最佳阳极氧化电压的火花阳极氧化,其具有稳定的金红石相TiO 2的晶体结构的海绵状纳米孔阳极膜,并且EP-USRP导致具有更高表面硬化深度的纳米晶体层(>220μm )通过严重的塑性变形。组合技术导致优异的摩擦学特性,摩擦系数与0.72相似(与EP-USRP相比,与0.80相比),具有较小的粘附性和耐磨性损失(最大深度为12nm,33.3%,比EP-USRP样本)。这些增强功能归因于通过火花阳极氧化(用作过渡层的发出并防止抗衡材料和基板之间的直接接触)和通过EP-USRP形成的硬化纳米晶层(减慢了阳极粉末的消耗)。

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