首页> 外文会议>Laser Institute of America Conference on Laser Materials Processing Cutting amp; Drilling, Nov 16-19, 1998, Orlando, FL USA >Investigation of the Nd: YAG laser percussion drilling process using high speed filming
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Investigation of the Nd: YAG laser percussion drilling process using high speed filming

机译:使用高速成膜的Nd:YAG激光撞击钻工艺的研究

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Modern aerospace gas turbines require large numbers of small diameter holes ( < 1 mm) to provide cooling in the turbine blades, nozzle guide vanes, combustion chambers and afterburner. A typical modern engine will have ~ 100,000 such holes. Such holes can be successfully produced by laser trepanning, but this is a relatively slow process compared with laser percussion drilling. With percussion drilling however the control of hole parameters such as taper, entrance hole variation and roundness is much more difficult and these parameters are of the utmost importance for such applications. There are a large number of factors which can potentially affect this process, so it is important to know which ones are critical, and therefore need to be well-controlled. We have therefore used experimental design techniques to determine which factors are dominant. In order to understand how changes in these dominant factors affect the process, we used a high speed camera operating at up to 40,000 frames per second, which gives 40 frames within the 1 ms second drilling laser pulse. The results are presented in this paper.
机译:现代航空燃气涡轮机需要大量小直径孔(<1 mm),以在涡轮机叶片,喷嘴导向叶片,燃烧室和加力燃烧室中提供冷却。典型的现代发动机将有100,000个这样的孔。这样的孔可以通过激光打孔成功地产生,但是与激光冲击钻相比,这是一个相对缓慢的过程。然而,对于冲击钻而言,孔参数如锥度,入口孔变化和圆度的控制要困难得多,并且这些参数对于这种应用是最重要的。有很多因素可能会影响此过程,因此重要的是要知道哪些因素至关重要,因此需要对其进行良好控制。因此,我们使用了实验设计技术来确定哪些因素是主要因素。为了了解这些主要因素的变化如何影响该过程,我们使用了以每秒40,000帧的速度运行的高速摄像头,该摄像头在1毫秒的每秒钻孔激光脉冲内产生了40帧。结果在本文中提出。

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