首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Research status and application prospects of manufacturing technology for micro-nano surface structures with low reflectivity
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Research status and application prospects of manufacturing technology for micro-nano surface structures with low reflectivity

机译:低反射率微纳米表面结构制造技术的研究现状及应用前景

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摘要

The light trapping surface of micro-nanostructure can significantly improve the performance of optical transmission and can greatly reduce the broadband domain of material surface reflectivity, which means the material surface absorptivity on wide-spectrum signal is enhanced. Several commonly used methods for manufacturing micro-nano surface of light trapping structure with low reflectivity are introduced first, including chemical etching, mechanical grooving, reactive ion etching, common long-pulse laser grooving, and ultra-fast pulse laser processing. This is followed by a comparison of the advantages and disadvantages of these methods. Among these methods, ultra-fast pulse laser processing is an ideal manufacturing technology for fabrication of light trapping structures. The research status of the micro-nano manufacturing technology of structured surfaces for light trapping with low reflectivity is reviewed, and emphasis is given to their application prospects. The research directions and trends of the micro-nano manufacturing technology of structured surfaces for light trapping with low reflectivity are summarized, and broad application prospects and research value in many fields, such as solar cells, solar water heater, building wave-absorbing materials, information acquisition of mechanized equipments, high-radiation heat exchange equipment, solar heating equipment, and solar air conditioner, are pointed out.
机译:微纳米结构的光捕获表面可以显着改善光传输性能,并且可以大大降低材料表面反射率的宽带域,这意味着材料表面在宽光谱信号上的吸收率得到增强。首先介绍了几种制备低反射率光阱结构的微纳米表面的常用方法,包括化学刻蚀,机械刻槽,反应离子刻蚀,常用的长脉冲激光刻槽和超快脉冲激光加工。接下来是对这些方法的优缺点的比较。在这些方法中,超快速脉冲激光加工是制造光捕获结构的理想制造技术。综述了低反射率光阱结构化表面微纳米制造技术的研究现状,并重点介绍了其应用前景。总结了低反射率光陷获结构化表面的微纳米制造技术的研究方向和趋势,并在太阳能电池,太阳能热水器,建筑吸波材料,指出了机械设备,高辐射热交换设备,太阳能采暖设备和太阳能空调的信息获取。

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