首页> 外文会议>International congress on applications of lasers electro-optics;ICALEO 2003;Laser materials processing conference;Laser microfabrication conference >Laser Percussion Drilling of Aerospace Material using a 10kW Peak Power Laser using a 400 μm Optical Fibre Delivery System. (503)
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Laser Percussion Drilling of Aerospace Material using a 10kW Peak Power Laser using a 400 μm Optical Fibre Delivery System. (503)

机译:使用10 kW峰值功率激光和400μm光纤传输系统对航空航天材料进行激光打击打孔。 (503)

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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. Drilling these cooling holes by Nd-YAG laser is now well established. Such holes can be successfully produced by laser trepanning, but this is a relatively slow process compared with laser percussion drilling both drilling techniques are performed using direct free space mirror delivery system. The aerospace industry would like to move to a fibre optic delivery system, but the only fibres capable of carrying the high peak powers involved are 600 μm core fibres with the associated poor beam and poor hole quality. By reducing the peak power of the laser and careful control of laser pulse and drilling parameters useful hole with good hole quality can be achieved. This paper investigates these parameters using a GSI Lumonics new JK700 series laser with a 400 μm optical fibre delivery system.
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,喷嘴导流叶片,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。用Nd-YAG激光打孔这些冷却孔现在已经很成熟。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,两种钻技术都使用直接自由空间镜传送系统来执行。航空航天业希望转向光纤传输系统,但是唯一能够承载高峰值功率的光纤是600μm芯光纤,其束流差和孔质量差。通过降低激光的峰值功率并仔细控制激光脉冲和钻孔参数,可以得到具有良好孔质量的有用孔。本文使用带有400μm光纤传输系统的GSI Lumonics新型JK700系列激光器研究这些参数。

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