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Preparation of durable underwater superoleophobic Ti6Al4V surfaces by electrochemical etching

机译:通过电化学刻蚀制备耐用的水下超疏油Ti6Al4V表面

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Underwater superoleophobic Ti6Al4V surfaces were fabricated successfully via electrochemical etching. The morphologies, chemical compositions and crystal structures of the prepared titanium alloy surfaces were characterised by scanning electron microscopy, energy-dispersive spectroscopy and X-ray diffraction, respectively. The relationship between the etching time and oil wettability in water was investigated and the formation mechanism of hierarchical micro/ nano rough structures on titanium alloy surfaces was also carefully analysed. Further, a series of exposure, immersion and abrasion tests were conducted to evaluate durability, corrosion resistance and abrasion resistance of the fabricated titanium alloy surfaces under harsh conditions. The results show that the prepared surfaces exhibit good underwater superoleophobicity, whose oil contact angle for dichloromethane in water is 158.9 degrees +/- 1.7 degrees and corresponding sliding angle is 6.4 degrees +/- 1.4 degrees. Our approach is simple, efficient and may broaden the potential applications of superoleophobic titanium alloy surfaces in underwater self-cleaning and anti-oil pollution fields.
机译:通过电化学刻蚀成功地制造了水下超疏油性Ti6Al4V表面。制备的钛合金表面的形貌,化学组成和晶体结构分别通过扫描电子显微镜,能谱和X射线衍射表征。研究了刻蚀时间与水中油润湿性之间的关系,并仔细分析了钛合金表面分层的微观/纳米粗糙结构的形成机理。此外,进行了一系列的暴露,浸没和磨损测试,以评估所制造的钛合金表面在苛刻条件下的耐久性,耐腐蚀性和耐磨性。结果表明,所制备的表面表现出良好的水下超疏油性,其与二氯甲烷在水中的油接触角为158.9度+/- 1.7度,相应的滑动角为6.4度+/- 1.4度。我们的方法简单,有效,可以扩大超疏油性钛合金表面在水下自清洁和防油污染领域的潜在应用。

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