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首页> 外文期刊>Journal of Colloid and Interface Science >Dependence of capillary forces on relative humidity and the surface properties of femtosecond laser micromachined titanium
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Dependence of capillary forces on relative humidity and the surface properties of femtosecond laser micromachined titanium

机译:飞秒激光微加工钛的毛细管力对相对湿度和表面性质的依赖性

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Capillary forces were measured with colloidal atomic force microscopy at different levels of relative humidity on femtosecond laser micromachined titanium surfaces. After laser machining at different intensity levels, the titanium surfaces show a nanoscale ripple topology or microscopic bumpy structures. Different machining environments were chosen to influence the surface chemistry in addition to topology: while machining in pure oxygen and water resulted in surfaces consisting of TiO2, a composite surface of TiO2 and TiN was obtained after machining in pure nitrogen. All samples were subsequently exposed to pure oxygen, carbon dioxide or water, and showed different levels of wettability and capillary force. We have introduced the concept of humidity sensitivity as the relative increase of the capillary force with respect to the measured force at 0% humidity. We report that samples with a nanoscale ripple topology machined in pure oxygen exhibit the lowest level of capillary force and the lowest sensitivity towards humidity in the environment. Surfaces with low sensitivity towards changes of the relative humidity are good candidates for technical applications, where capillary forces have to be controlled. This study contributes to the development of such surfaces, to a better understanding of how capillary bridges are formed on rough surfaces and ultimately to the exploration of the relationship between surface wettability and capillary forces. (C) 2015 Elsevier Inc. All rights reserved.
机译:用飞秒激光微加工钛表面上不同相对湿度水平的胶体原子力显微镜测量毛细管力。在不同强度水平的激光加工之后,钛表面显示出纳米级的波纹拓扑或微观的凹凸结构。除了拓扑结构外,还选择了不同的加工环境来影响表面化学性质:在纯氧和水中进行加工会产生由TiO2组成的表面,而在纯氮中进行加工后会得到TiO2和TiN的复合表面。随后将所有样品暴露于纯氧,二氧化碳或水,并显示出不同水平的润湿性和毛细作用力。我们引入了湿度敏感性的概念,即毛细作用力相对于0%湿度下测得的作用力的相对增加。我们报告说,在纯氧中具有纳米级波纹拓扑结构的样品表现出最低水平的毛细作用力和对环境湿度的最低灵敏度。对相对湿度变化敏感度低的表面是必须控制毛细作用力的技术应用的理想选择。这项研究有助于此类表面的发展,有助于更好地了解在粗糙表面上如何形成毛细管桥,并最终有助于探索表面润湿性与毛细管力之间的关系。 (C)2015 Elsevier Inc.保留所有权利。

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