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Investigation of Adhesive Resistance of Aluminum Alloy by Sandblasting and Electrochemical Machining

机译:喷砂和电化学加工对铝合金的粘接性能的研究

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摘要

A novel method for fabricating an adhesive resistance surface is presented. Sandblasting and electrochemical machining were introduced to prepare micro-nano structures on the sample surface. Then, the prepared sample was immersed in a tridecafluoroctyltriethoxysilane ethanol solvent. The surface of the aluminum alloy sample roughened and covered with low-surface-energy chemical groups was examined by scanning electron microscope (SEM) and atomic force microscope (AFM). Surface wettability and adhesive resistance of the treated sample were characterized by water contact angles, area fraction, sliding angle and solid surface energy. Furthermore, the effects of some process parameters, such as sand size, current density, electrochemical machining time, and electrolyte concentration, on the contact angle, area fraction, sliding angle and the solid surface-energy of the modified sample surfaces were provided. The results show that the combination of binary micro-structures and surface modification of tridecafluoroctyltriethoxysilane plays a role to improve adhesive resistance of the aluminum alloy surface.
机译:提出了一种制造抗粘表面的新颖方法。引入喷砂和电化学加工以在样品表面上制备微纳结构。然后,将制得的样品浸入十三氟甲基三乙氧基硅烷乙醇溶剂中。通过扫描电子显微镜(SEM)和原子力显微镜(AFM)检查粗糙化并覆盖有低表面能化学基团的铝合金样品的表面。用水接触角,面积分数,滑动角和固体表面能表征处理过的样品的表面润湿性和粘附性。此外,提供了一些工艺参数的影响,例如砂粒大小,电流密度,电化学加工时间和电解质浓度,对改性样品表面的接触角,面积分数,滑动角和固体表面能的影响。结果表明,十三碳十二烷基三乙氧基硅烷的二元微观结构和表面改性的结合对提高铝合金表面的附着力起着重要的作用。

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