Control of hydrophobic and hydrophilic characteristics of metallic materials using shot blasting

Q3 Engineering
F. Sano, K. Nambu, Yusuke Uchiumi, M. Okumiya
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引用次数: 0

Abstract

In this study, changes in surface texture and surface wettability caused by shot blasting were analysed quantitatively by measuring the contact angle. Shot blasting was performed on stainless steel (AISI 304). Six types of particles with different shapes and mechanical properties were used, and the processing pressure and time were varied. It was observed that the shape and mechanical properties of the particles affected the surface wettability more than the processing pressure and time. In particular, the wettability improved when using polygonal particles than on an untreated surface, and it decreased slightly when using spherical particles. A correlation was observed between arithmetic mean roughness (Ra) and wettability. In other words, a parameter describing the height direction in the surface roughness can be used as a guideline to control wettability. In addition, we performed theoretical calculations based on Wenzel's theory and compared the theoretical and the measured values. The increase of the surface roughness by the shot blasting was found to have little influence on the wettability in the Wenzel theory method. A correlation between the arithmetic mean roughness Ra and the wettability was observed. However, a comparison with Wenzel's theory showed that there are other parameters that affect the wettability rather than the roughness.
用抛丸法控制金属材料的疏水性和亲水性
本文通过对接触角的测量,定量分析了抛丸对表面织构和表面润湿性的影响。对不锈钢(AISI 304)进行抛丸处理。采用了6种形状和力学性能不同的颗粒,加工压力和时间也有所不同。结果表明,颗粒的形状和力学性能对表面润湿性的影响大于处理压力和时间。特别是,使用多边形颗粒时,润湿性比使用未经处理的表面有所改善,而使用球形颗粒时,润湿性略有下降。算术平均粗糙度(Ra)与润湿性之间存在相关性。换句话说,描述表面粗糙度高度方向的参数可以作为控制润湿性的指导。此外,我们根据Wenzel的理论进行了理论计算,并将理论值与实测值进行了比较。温泽尔理论方法发现抛丸后表面粗糙度的增加对润湿性影响不大。算术平均粗糙度Ra与润湿性之间存在相关性。然而,与Wenzel理论的比较表明,还有其他参数影响润湿性而不是粗糙度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Abrasive Technology
International Journal of Abrasive Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
0.90
自引率
0.00%
发文量
13
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