The Morphologies and Wetting Properties of CK40 and AA2024 Surfaces Produced by Chemical Etching and Stearic Acid Modification

IF 1.1 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING
Nilhan Urkmez Taskin, Cigdem Ovaci Beji, Fatih Ordu, Vedat Taskin
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Abstract

By applying surface modification after chemical etching, superhydrophobic aluminum and steel surfaces were obtained. With different etching times, from all surfaces, different surface roughness values (Ra) were obtained. The effect of Ra’s on surface contact angles (CA) was determined by applying surface modification with stearic acid (STA) to all surfaces under the same conditions. With increased etching time, the surface roughness of both aluminum and steel has increased. Thus, in the current study, wettability seems to be affected only by the changes in surface roughness values. Although the etching reactive and the modification procedure are being same, higher contact angles were obtained on steel surfaces in shorter etching durations compared to aluminum surfaces. The maximum contact angles measured were 125.35 ± 8.32° on aluminum surfaces and 164.68 ± 3.62° on steel surfaces. With the current etching method, the minimum etching times required to reach the hydrophobic/superhydrophobic structure for the CK40 and the AA2024 samples were determined. Furthermore, optimum etching times under 10 min for CK40 and under 30 min for AA2024 were determined achieve the maximum contact angle.

Abstract Image

化学蚀刻和硬脂酸改性制备CK40和AA2024表面的形貌和润湿性能
通过化学腐蚀后的表面改性,获得了超疏水铝和钢的表面。在不同的蚀刻时间下,从所有表面得到不同的表面粗糙度值(Ra)。在相同条件下,通过硬脂酸(STA)对所有表面进行表面改性,确定了Ra对表面接触角(CA)的影响。随着蚀刻时间的延长,铝和钢的表面粗糙度都有所增加。因此,在目前的研究中,润湿性似乎只受表面粗糙度值变化的影响。虽然蚀刻反应和改性过程相同,但与铝表面相比,钢表面在更短的蚀刻时间内获得了更高的接触角。测得的最大接触角在铝表面为125.35±8.32°,在钢表面为164.68±3.62°。利用现有的刻蚀方法,确定了CK40和AA2024样品达到疏水/超疏水结构所需的最小刻蚀次数。此外,CK40的最佳蚀刻时间为10 min, AA2024的最佳蚀刻时间为30 min,可获得最大接触角。
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来源期刊
CiteScore
1.90
自引率
18.20%
发文量
90
审稿时长
4-8 weeks
期刊介绍: Protection of Metals and Physical Chemistry of Surfaces is an international peer reviewed journal that publishes articles covering all aspects of the physical chemistry of materials and interfaces in various environments. The journal covers all related problems of modern physical chemistry and materials science, including: physicochemical processes at interfaces; adsorption phenomena; complexing from molecular and supramolecular structures at the interfaces to new substances, materials and coatings; nanoscale and nanostructured materials and coatings, composed and dispersed materials; physicochemical problems of corrosion, degradation and protection; investigation methods for surface and interface systems, processes, structures, materials and coatings. No principe restrictions exist related systems, types of processes, methods of control and study. The journal welcomes conceptual, theoretical, experimental, methodological, instrumental, environmental, and all other possible studies.
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