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Controlling efficiency of laser drilling

机译:激光钻孔的控制效率

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摘要

This study theoretically identifies the conditions for the keyhole collapse during drilling with a high intensity laser beam. Laser drilling is widely used in components, packaging and manufacturing technologies [1,2]. The approach adapted is to probe the quasi-steady, one-dimensional supersonic flow behavior of the two-phase, vapor-liquid dispersion in a vertical keyhole of varying cross-section, paying particular attention to transition between annular and slug flows [3-5]. Drilling with a pulsed laser beam evidently can change energy absorption and drilling speed. The results therefore find that thermal drilling is susceptible to become incapable subject to higher absorbed energy, and drilling velocity. Finding factors to enhance efficiency and quality of drilling is therefore provided in this work.
机译:该研究从理论上确定了在高强度激光束钻孔过程中匙孔塌陷的条件。激光钻孔被广泛用于组件,包装和制造技术[1,2]。所采用的方法是探究横截面变化的垂直锁孔中两相气液分散的准稳态,一维超声速流动行为,尤其要注意环形流和团状流之间的过渡[3- 5]。脉冲激光束钻孔显然会改变能量吸收和钻孔速度。因此,结果发现,热钻孔容易变得不能承受更高的吸收能量和钻孔速度。因此,在这项工作中提供了提高钻探效率和质量的因素。

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