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Influence of gold nanolayer coating on the continuous-wave laser ablation of a pure aluminum surface: Evaluations of structural and optical features

机译:金纳米层涂层对纯铝表面连续波激光烧蚀的影响:结构和光学特性的评估

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摘要

In this paper, formation of uniform and large-area microanostructures on pure aluminum surfaces using a continuous-wave laser irradiation is presented. Gold nanolayer coating was utilized as a confinement layer for controlling the possible hydrodynamic phenomena in a molten area. Dependency of the laser-induced morphology on the thickness of a gold coating was investigated in this regard. Scanning electron microscopy, energy dispersive spectroscopy, grazing test of the X-ray diffraction, and optical absorption/reflection spectroscopy in UV/visible/IR ranges were employed to characterize the samples. Results showed that the formation of uniform structures of average sizes of 50 nm-5 mu m on aluminum surface was possible following the irradiation of a continuous-wave CO2 laser, delivering 130 W beam power. Alterations of the surface morphology brought about an increase in specific absorption peaks at the UV region and the appearance of an absorption peak in the visible range. In addition, these structure-covered surfaces provided interesting reflection behaviors in different spectral areas, which can clearly reflect their high potential to be used as selective solar absorbers. The results of this investigation indicated that optical characteristics such as absorption and emission coefficients as well as factor were 0.98, 0.13, and 7.53, respectively. It can therefore be concluded that this process can be considered an efficient and fast technique to fabricate selective solar absorbers.
机译:在本文中,提出了使用连续波激光辐照在纯铝表面上形成均匀且大面积的微观/纳米结构。金纳米层涂层被用作限制层以控制熔融区域中可能的流体动力学现象。在这方面,研究了激光诱导的形态对金涂层厚度的依赖性。使用扫描电子显微镜,能量色散光谱,X射线衍射的掠射测试以及UV /可见光/ IR范围内的光吸收/反射光谱来表征样品。结果表明,在连续波CO2激光照射下,可以在铝表面上形成平均尺寸为50 nm-5μm的均匀结构,并提供130 W的光束功率。表面形态的改变导致在UV区域的比吸收峰增加,并且在可见光范围内出现吸收峰。此外,这些结构覆盖的表面在不同的光谱区域提供了有趣的反射行为,可以清楚地反映出其用作选择性太阳能吸收器的高潜力。研究结果表明,光学特性,例如吸收系数和发射系数以及因数分别为0.98、0.13和7.53。因此可以得出结论,该方法可以被认为是制造选择性太阳能吸收器的有效且快速的技术。

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