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Dynamic characteristics of gas jets from subsonic and supersonic nozzles for high pressure gas laser cutting

机译:亚音速和超音速喷嘴的高压气体激光切割气体射流的动态特性

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During laser cutting of stainless steels, titanium and aluminum alloys, a coaxial and high pressure inert gas jet is used to improve the cut edge quality. The process normally consumes a large amount of inert gas and has a poor tolerance to variation in process parameters. This is solely because the gas nozzles are mostly of the conical and convergent type in which the gas jets are subsonic. Based on two dimensional steady state gas dynamic theory, computer simulation and shadowgraphic techniques, the gas jet patterns from conical nozzles and the newly designed supersonic nozzles are analyzed. The distribution of pressure, momentum, gas density and existence of shock waves are predicted and mapped. Based on these characteristics, the effect of the gas jets upon the cut quality is explained. It is concluded that a supersonic gas jet offers the best how characteristics for high pressure laser cutting. (C) 1999 Elsevier Science Ltd. All rights reserved. [References: 17]
机译:在不锈钢,钛和铝合金的激光切割过程中,使用同轴高压惰性气体喷嘴来提高切割边缘的质量。该工艺通常消耗大量惰性气体,并且对工艺参数变化的耐受性差。这仅是因为气体喷嘴大多是圆锥形和会聚型的,其中气体喷嘴是亚音速的。基于二维稳态气体动力学理论,计算机仿真和阴影技术,分析了锥形喷嘴和新设计的超音速喷嘴的气体喷射方式。预测并绘制了压力,动量,气体密度和冲击波的分布。基于这些特征,说明了气体射流对切割质量的影响。结论是,超音速气体射流为高压激光切割提供了最佳的特性。 (C)1999 Elsevier ScienceLtd。保留所有权利。 [参考:17]

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