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Laser Drilling of Transparent Media for the Study of Material Removal, Taper and Spatter Formation Mechanisms

机译:用于研究材料去除,锥度和喷溅机制的激光钻孔

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This paper presents an investigation of the dynamics of drilling a visually transparent media using a CO_2 laser source. This enabled the use of a high-speed imaging system for observing, in real time, the behaviour of the drilling process below the workpiece surface. The work revealed that the transient drilling velocity within each laser pulse can vary considerably from the steady state drilling velocity as a result of the temporal pulse shape and the oscillation of the melt ejection rate. During beam breakthrough, both upward and downward melt ejections were observed to occur inside the hole cavity for a short period of time, after which the material was ejected downwards only. It has been shown in this work that the downward melt flow velocity increases with hole depth for a positive taper hole geometry (0.09-1.43 ms~(-1)) and decreases with hole depth for a negative hole geometry from 0.4 to 0.1 ms~(-1), as a result of the change in the assist gas velocity inside the hole cavity with respect to the hole taper geometry. The mechanisms of forming the positive and negative tapered holes in the transparent media have been correlated with the hole geometry and melt flow velocity.
机译:本文提出使用CO_2激光源钻一个视觉透明媒体的动态特性的调查。这使得使用高速成像系统的用于观察,在实时中,工件表面下方的钻井过程的行为。工作表明,每个激光脉冲中的瞬时速度钻孔可以从稳定状态钻孔速度为时间的脉冲形状的结果和熔体喷射速率的振荡相当大的变化。在光束的突破,向上和向下熔化观察孔腔内部发生的时间短的时间,在此之后将材料向下喷出只喷射。它已经在该工作已经表明,该向下的熔体流动为正锥形孔的几何形状与孔深速度增加(0.09-1.43毫秒〜(-1)),并用从0.4负孔的几何形状孔的深度减小到0.1毫秒〜 (-1),作为相对于所述孔的锥度几何在孔腔内的辅助气体速度的变化的结果。形成在所述透明介质的正和负锥形孔的机制已被相关与孔的几何形状和熔体流动速度。

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