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An Investigation into Picosecond Laser Micro-Trepanning of Alumina Ceramics Employing a Semi-Water-Immersed Scheme

机译:采用半水浸方案的氧化铝陶瓷皮秒激光微刻蚀研究

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摘要

Intense interest has been given to the fabrication of micro-through-holes with smaller tapering and higher aspect ratios in engineering ceramics due to their wide range of applications in MEMS and aerospace. A semi-water-immersed laser micro-trepanning (SWILT) scheme is proposed and investigated in this paper with alumina ceramics as the target material, and its performance is assessed and compared with the direct laser trepanning method. Relevant processing parameters influencing the trepanning process are explored through an orthogonally designed experiment, and their effects on hole profiles are adequately discussed to yield optimized parameters. It is revealed that SWILT is capable of producing micro-through-holes with minimized hole tapering and much straighter sidewalls compared with the direct trepanning results, whereas the ablated surface quality is relatively rougher. The micro-through-hole formation mechanisms are also amply analyzed, where the transition hole development may be purely attributed to the laser-material interaction in the direct laser trepanning condition, while the SWILT case features an enhanced material-removal rate, especially at the lower part of the through-hole. The latter is due to the strengthened mechanical effects coming from the water-confined plasma zone and the following cavitation bubble collapse, which may efficiently expel the molten material from sidewalls and result in significantly reduced hole tapering.
机译:由于其在MEMS和航空航天中的广泛应用,人们对在工程陶瓷中具有较小的锥度和较高的纵​​横比的微通孔的制造给予了极大的关注。提出并研究了以氧化铝陶瓷为靶材的半水浸激光微细加工技术,并与直接激光微细加工方法进行了比较。通过正交设计的实验探索了影响开孔工艺的相关工艺参数,并充分讨论了它们对孔轮廓的影响,以产生优化的参数。结果表明,与直接开孔结果相比,SWILT能够生产出最小的孔锥度和更直的侧壁的微通孔,而烧蚀后的表面质量则相对较粗糙。还对微通孔的形成机理进行了深入分析,其中过渡孔的发展可能完全归因于直接激光穿透条件下激光与材料的相互作用,而SWILT外壳的材料去除率提高了,特别是在通孔的下部。后者是由于受水限制的等离子体区产生的增强的机械作用和随后的空化气泡塌陷,这可能有效地将熔融材料从侧壁排出,并显着减少了孔锥度。

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