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Ultrasonic Vibration Turning to Increase the Deposition Efficiency of a silica-based Sol-Gel Coating

机译:超声振动转向提高二氧化硅基溶胶凝胶涂层的沉积效率

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摘要

Magnesium alloys are attracting more and more attention for producing temporary prosthetic devices thanks to their bioresorbable characteristics in human environment. However, they present a reduced corrosion resistance to body fluids, which still limits their applications to a great extent. One possible way to increase the corrosion performances is to coat the device with a suitable coating that provides a barrier to the body fluids corrosion. In this work, Ultrasonic Vibration Turning (UVT) is used to create a surface texture to the AZ31 magnesium alloy with the aim of improving the surface wettability and therefore helping the subsequent coating deposition. The obtained results showed that the surface texture induced by UVT contributed to increase the surface wettability of approximately 17% compared to the conventional turning case, regardless of the adopted cutting parameters. The UVT texture proved to improve the efficiency of the coating deposition since the thickness of the deposited sol-gel coating was increased when applied to UVT surfaces, especially at the lowest depth of cut and highest cutting speed that contributed to generate deeper dimples.
机译:镁合金由于在人体环境中具有生物可吸收的特性,因此越来越受到生产临时修复装置的关注。然而,它们呈现出降低的对体液的耐腐蚀性,这仍然在很大程度上限制了它们的应用。提高腐蚀性能的一种可能方法是在设备上涂一层合适的涂层,该涂层为体液腐蚀提供屏障。在这项工作中,超声波振动车削(UVT)用于为AZ31镁合金创建表面纹理,以提高表面润湿性并因此帮助后续涂层沉积。获得的结果表明,与采用常规车削的情况相比,无论采用何种切削参数,UVT诱导的表面织构都有助于将表面润湿性提高约17%。事实证明,UVT质感可提高涂层沉积的效率,因为当应用于UVT表面时,沉积的溶胶-凝胶涂层的厚度会增加,尤其是在最低切深和最高切割速度下,这会产生更深的凹痕。

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