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Preparation of Biomimetic Multi-Scale Oleophobic Surface on X70 Pipeline Steel

机译:X70管线钢仿生多尺度疏油表面的制备

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Oleophobic surface has broad application prospects in petroleum, petrochemical, and food industries because of its non-stick oil and self-cleaning characteristics. Oleophobic surface has mainly two features: one is fine structure with micro-nano combined scale, and another is low surface energy. An oleophobic surface was successfully prepared on X70 pipeline steel surface using shot peening, chemical etching and low surface energy modifying composite methods in this study. The surface of X70 pipeline steel sample was first treated by shot peening, forming a rough structure on the sample surface. And then the sample surface was chemically etched with hydrochloric acid (HCl) solution to further refine the surface structure, forming micro-nano combined structure. Finally the surface of the specimen was low energy modified using perfluorooctanoic acid ethanol solution (PAES). The influences of HCl concentration, chemical etching time, perfluorooctanoic acid concentration, and modification time on the contact angle were analyzed. The best process parameters were optimized. The surface morphology of X70 pipeline steel sample was observed using scanning electron microscope (SEM). It was observed that there were micron structures composed of the convexes and concaves on the specimen surface treated by shot peening and chemical etching. There were nanoscale acicular structures on the micrometer grade structure. After the micro-nano composite structure was modified with PAES, the contact angle between the sample surface and oil droplet was significantly improved. The maximum contact angle of the sample surface with oil droplet was 141°.
机译:由于其不粘的油和自清洁特性,疏油表面在石油,石化和食品工业中具有广泛的应用前景。疏油表面主要具有两个特点:一个是具有微纳米组合规模的细结构,另一个是低表面能。在本研究中使用射击,化学蚀刻和低表面能改性复合方法在X70管道钢表面上成功制备了一种疏油表面。首先通过喷丸处理X70管线钢样品的表面,在样品表面上形成粗糙的结构。然后用盐酸(HCl)溶液化学蚀刻样品表面,以进一步细化形成微纳米组合结构的表面结构。最后,使用全氟辛酸乙醇溶液(PAES)改性样品的表面低。分析了HCl浓度,化学蚀刻时间,全氟辛酸浓度和改性时间对接触角的影响。优化了最佳的工艺参数。使用扫描电子显微镜(SEM)观察X70管线钢样品的表面形态。观察到通过喷丸和化学蚀刻处理的标本表面上的凸起和凹陷组成的微米结构。微米级结构上有纳米级纤度结构。用PAES改变微纳米复合结构后,样品表面和油滴之间的接触角得到显着提高。用油滴的样品表面的最大接触角为141°。

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