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Application of high speed filming techniques to the study of rearwards melt ejection in laser drilling

机译:高速成膜技术在激光钻孔后向熔喷研究中的应用

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摘要

Melt ejection is the dominant material removal mechanism in long, ms, pulse laser drilling of metals, a process with applications such as the drilling of cooling holes in turbine blades. Droplets of molten material are ejected through the entrance hole and, after breakthrough, through the exit hole. High speed filming is used to study the ejected material in order to better understand how this debris may interact with material in the immediate vicinity of the drilled hole. Existing studies have quantified various aspects of melt ejection, however they usually focus on ejection through the entrance hole. This work concentrates on rear melt ejection and is relevant to issues such as rear wall impingement. A 2kW IPG 200S fibre laser is used to drill mild steel. High speed filming is combined with image analysis to characterise the rearward-ejected material. Particle size and velocity data is presented as a function of drilling parameters. It is concluded that high speed filming combined with image analysis and proper consideration of process limitations and optimisation strategies can be a powerful tool in understanding resultant debris distributions.
机译:熔体喷射是长时间的金属脉冲激光钻孔中主要的材料去除机制,该过程的应用包括在涡轮机叶片上钻孔等。熔融材料的液滴从入口孔喷出,穿透后从出口孔喷出。高速胶片用于研究喷射的材料,以便更好地理解这些碎片如何与钻孔附近的材料相互作用。现有研究已经量化了熔体喷射的各个方面,但是它们通常集中在通过入口孔的喷射上。这项工作集中在后部熔体喷射上,并且与后壁撞击等问题有关。 2kW IPG 200S光纤激光器用于钻孔低碳钢。高速摄影与图像分析相结合,以表征向后喷射的材料。粒度和速度数据是随钻井参数而变化的。结论是,高速摄影结合图像分析以及适当考虑工艺限制和优化策略可以成为了解最终碎片分布的有力工具。

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