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High power diode laser marking and engraving of building materials

机译:大功率二极管激光打标和建筑材料雕刻

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摘要

A Diomed 60W-cw high power diode laser (HPDL) has been used for the marking and engraving of various building materials, including; marble, granite, clay tiles, ceramic tiles, roof tiles, ordinary Portland cement (OPC) and clay bricks. Morphological and microstructural characteristics are presented. The basic mechanisms of marking/engraving and characteristics of the beam absorption are described. The effects of material texture, colour and laser processing parameters are reported. The work shows that engraving depths of over 2mm (0.75mm for a single pass) can be achieved on marble substrates by thermal disintegration of CaCO3 into loose CaO powder and CO2 gas. Uniform amorphous glazed lines (1-3mm line width) of a colour different from the untreated materials can be generated on clay tiles, ceramic tiles, roof tiles, clay bricks and OPC by solidification phase formation after laser melting of these materials. Effects of atmospheric conditions, for instance using O2 and Ar gas shrouds, have been examined, with different coloured marks being observed when different shroud gases are used. To demonstrate the practical worth of the process a UMIST crest has been marked on a ceramic tile using the system. Laser beam reflectivity is found to depend not only on material composition but also its colour. Reflectivity has been found to range between 12% to 18% for the various construction materials used in the experiment, except for marble (grey) which showed over 27% reflectivity. Since the HPDL is a portable device, in-field application of these processing techniques can be realised, which would be either impossible or difficult when using other types of lasers.
机译:Diomed 60W-cw高功率二极管激光器(HPDL)已用于标记和雕刻各种建筑材料,包括:大理石,花岗岩,粘土砖,瓷砖,屋顶砖,普通波特兰水泥(OPC)和粘土砖。介绍了形态和微观结构特征。描述了标记/雕刻的基本机理和光束吸收的特性。报告了材料质地,颜色和激光加工参数的影响。这项工作表明,通过将CaCO3热分解成疏松的CaO粉和CO2气体,可以在大理石基材上实现2mm以上的雕刻深度(单程0.75mm)。在这些材料进行激光熔化后,通过凝固相的形成,可以在粘土砖,瓷砖,屋顶砖,粘土砖和OPC上生成颜色与未经处理的材料不同的均匀无定形釉面线(线宽1-3mm)。已经检查了大气条件的影响,例如使用O2和Ar气罩,当使用不同的气罩气体时会观察到不同的彩色标记。为了演示该方法的实用价值,已使用该系统在瓷砖上标记了UMIST徽标。发现激光束反射率不仅取决于材料成分,而且取决于其颜色。已发现,实验中使用的各种建筑材料的反射率介于12%至18%之间,大理石(灰色)除外,反射率超过27%。由于HPDL是便携式设备,因此可以实现这些处理技术的现场应用,这在使用其他类型的激光器时将是不可能的,也可能是困难的。

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