Peta Katarzyna
Institute of Mechanical Technology, Poznan University of Technology, 60-965 Poznan, Poland.
Materials (Basel). 2024 Nov 22;17(23):5716. doi: 10.3390/ma17235716.
Surface microgeometry created by the energy of electric discharges is related to surface wetting behavior. These relationships change depending on the scale of observation. In this work, contact angles correlated with the surface complexity of AA 6060 after electro-discharge machining were analyzed at different observation scales. This research focuses on the methodology of selecting the best scales for observing wetting phenomena on irregular surfaces, as well as indicating the topographic characterization parameters of the surface in relation to the scales. Additionally, the geometric features of the surface that determine the contact angle were identified. In this study, the surfaces of an aluminum alloy are rendered using focus variation 3D microscopy and described by standardized ISO, area-scale, and length-scale parameters. The research also confirms that it is possible to design surface wettability, including its hydrophilicity and hydrophobicity, using electrical discharge machining parameters. The static and dynamic behavior of liquids on surfaces relevant to contact mechanics was also determined.
由放电能量产生的表面微观几何形状与表面润湿行为相关。这些关系会根据观察尺度而变化。在这项工作中,在不同观察尺度下分析了电火花加工后AA 6060表面复杂性与接触角的相关性。本研究重点关注选择最佳尺度以观察不规则表面上润湿现象的方法,以及指出与尺度相关的表面形貌表征参数。此外,还确定了决定接触角的表面几何特征。在本研究中,铝合金表面使用聚焦变化三维显微镜进行呈现,并通过标准化的ISO、面积尺度和长度尺度参数进行描述。该研究还证实,利用电火花加工参数可以设计表面润湿性,包括其亲水性和疏水性。还确定了与接触力学相关的液体在表面上的静态和动态行为。