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首页> 外文期刊>Micromachines >Fabrication of Adhesive Resistance Surface with Low Wettability on Ti6Al4V Alloys by Electro-Brush Plating
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Fabrication of Adhesive Resistance Surface with Low Wettability on Ti6Al4V Alloys by Electro-Brush Plating

机译:电刷镀法在Ti6Al4V合金上制备低润湿性的耐粘接表面

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Anti-adhesive Ni coatings with low wettability were successfully fabricated on Ti6Al4V substrates via an electro-brush plating method, and subsequently modified with a fluoroalkylsilane (FAS) film. The surface morphology, chemical compositions, and wettability of the as-prepared coatings were measured using scanning electron microscopy (SEM), X-ray diffractometer (XRD), Fourier transform infrared spectrophotometry (FTIR), and contact angle measurements. The results showed that the surface of Ti6Al4V substrate was endowed with flower-like structures. Each flower-like cluster was constituted by a large number of Ni ions. After surface modification of FAS, the as-prepared Ti6Al4V surface had a water contact angle as high as 151.5°, a sliding angle close to 2.1°, and a solid surface energy as low as 0.97 mJ/m 2 . Potentiodynamic polarization tests showed that the Ni coating could provide a stable corrosion protection. In addition, the effects of processing conditions, such as working voltage, relative velocity, electrolyte concentration, and processing time, were investigated. The mechanism of the adhesive resistance was proposed, and the low wettability of Ti6Al4V surfaces was explained by Cassie–Baxter model. As a result, it was necessary to reduce the fraction of the solid–liquid interface in order to achieve anti-adhesive surface.
机译:通过电刷镀方法在Ti6Al4V基材上成功制备了具有低润湿性的防粘Ni涂层,随后用氟烷基硅烷(FAS)膜对其进行了改性。使用扫描电子显微镜(SEM),X射线衍射仪(XRD),傅里叶变换红外分光光度法(FTIR)和接触角测量来测量所制备涂层的表面形态,化学组成和润湿性。结果表明,Ti6Al4V衬底表面具有花状结构。每个花状簇由大量的镍离子构成。在FAS的表面改性之后,所制备的Ti6Al4V表面的水接触角高达151.5°,滑动角接近2.1°,固体表面能低至0.97 mJ / m 2。电位动力极化试验表明,镍涂层可以提供稳定的腐蚀防护。另外,研究了加工条件的影响,例如工作电压,相对速度,电解质浓度和加工时间。提出了耐粘附性的机理,并通过Cassie–Baxter模型解释了Ti6Al4V表面的低润湿性。因此,必须减少固液界面的比例才能获得抗粘表面。

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