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首页> 外文期刊>ACS applied materials & interfaces >Controlling the Wettability of Steel Surfaces Processed with Femtosecond Laser Pulses
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Controlling the Wettability of Steel Surfaces Processed with Femtosecond Laser Pulses

机译:用飞秒激光脉冲控制处理钢表面的润湿性

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摘要

The wettability of a material surface is an essential property that can define the range of applications it can be used for. In the particular case of steel, industrial applications are countless but sometimes limited because of the lack of control over its surface properties. Although different strategies have been proposed to tune the wetting behavior of metal surfaces, most of them require the use of processes such as coatings with different materials or plasma/chemical etching. In this work, we present two different laser-based direct-write strategies that allow tuning the wetting properties of 1.7131 steel over a wide range of contact angles using a high repetition rate femtosecond laser. The strategy consists in the writing of parallel and crossed lines with variable spacing. A detailed morphological analysis confirmed the formation of microstructures superimposed with nanofeatures, forming a hierarchical surface topography that influences the wetting properties of the material surface. Contact angle measurements with water confirm that this behavior is mostly dependent on the line-to-line spacing and the polarization dependent orientation of the structures. Moreover, we demonstrate that the structures can be easily replicated in a polymer using a laser-fabricated steel master, which enables low-cost mass production. These findings provide a practical route for developing user-defined wetting control for new applications of steel and other materials functionalized by rapid laser structuring.
机译:材料表面的润湿性是可以定义它可以用于的应用范围的必要性。在钢的特定情况下,由于对其表面特性的控制缺乏控制,工业应用是无数的但有时有限。尽管已经提出了不同的策略来调整金属表面的润湿行为,但大多数需要使用具有不同材料或等离子体/化学蚀刻的涂层等方法。在这项工作中,我们展示了两种不同的基于激光的直接写策略,允许使用高重复率飞秒激光器在宽范围的接触角上调节1.7131钢的润湿性能。该策略在于具有可变间距的平行和交叉线的写作。详细的形态学分析证实了叠加用纳米泡的微观结构的形成,形成分层表面形貌,其影响材料表面的润湿性质。与水的接触角测量确认此行为主要取决于线到线间距和结构的偏振相关方向。此外,我们证明可以使用激光制造的钢母生产力在聚合物中容易地复制结构,这使得能够实现低成本的批量生产。这些调查结果提供了一种用于开发用户定义的诸如快速激光结构官能化的钢和其他材料的新应用的用户定义润湿控制的实用途径。

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