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Laser Microdrilling of Slate Tiles

机译:板岩砖的激光微钻

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摘要

Slate is a natural rock usually used in roofs, façades, and for tiling. In spite of this broad use, the production process of slate tiles requires substantial improvements. An important quantity of slate from the quarry is wasted during the manufacturing of the final product. Furthermore, processes are not automatized and the production lead times can be considerably shortened. Therefore, new processing methods to increase productivity, reduce costs and to provide added value to the final slate product are required. Drilling is an important part of these manufacturing processes. Conventional drilling processes usually cause the breaking of the slate tiles; then, even a higher quantity of material is wasted. To overcome these problems, lasers emerge as a feasible tool to produce holes in this material, since mechanical stresses are not induced on the workpiece. In this work, we have studied the CO2 laser microdrilling of slate tiles. We used a Design of Experiments (DOE) methodology to determine the influence of the laser processing parameters on the hole quality. This work demonstrates the capability of a CO2 laser to produce holes in slate with less than 100 microns in diameter, avoiding any fracture, and with a processing time of less than 50 ms per hole. Finally, this process demonstrates the viability of the production of high-density micron-sized holes in a slate tile for water draining purposes.
机译:板岩是一种天然岩石,通常用于屋顶,外墙和瓷砖。尽管用途广泛,但板岩瓦的生产工艺仍需要大量改进。在最终产品的制造过程中,浪费了来自采石场的大量石板。此外,过程无法实现自动化,并且可以大大缩短生产提前期。因此,需要新的加工方法以提高生产率,降低成本并为最终板岩产品提供附加价值。钻孔是这些制造过程的重要组成部分。传统的钻孔工艺通常会导致板岩瓦的破裂;这样就浪费了更多的材料。为了克服这些问题,由于在工件上不产生机械应力,因此激光作为在这种材料上产生孔的可行工具出现了。在这项工作中,我们研究了石板瓦的CO2激光微钻。我们使用实验设计(DOE)方法确定激光加工参数对孔质量的影响。这项工作证明了CO2激光在板岩中产生直径小于100微米的孔的能力,避免了任何破裂,每个孔的处理时间少于50毫秒。最后,该过程证明了在板砖中生产高密度微米级孔以排水的可行性。

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