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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Modelling the laser fusion cutting process: II. Distribution of supersonic gas flow field inside the cut kerf
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Modelling the laser fusion cutting process: II. Distribution of supersonic gas flow field inside the cut kerf

机译:建模激光熔化切割过程:II。切缝内部超音速气流场的分布

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摘要

A mathematical model is developed to calculate the distribution of the gas flow field at the entrance, inside and exit of a laser cut kerf for inlet stagnation pressures greater than or equal to5 bar for an inert assist gas jet exiting from a supersonic nozzle. A two-dimensional analytical method is adopted to locate approximately the position and shape of the detached shock above the cutting front surface according to the geometrical shape of the cutting front. A method of two-dimensional characteristics is applied to calculate the gas flow field distribution along the cutting front. The calculated results of the flow field distribution are simulated by the computer and can be used to estimate and analyse the cut-edge quality under different cutting conditions. [References: 21]
机译:建立了数学模型,以计算从超音速喷嘴流出的惰性辅助气体射流,当进气滞止压力大于或等于5 bar时,激光切割切口的入口,内部和出口处的气流场分布。采用二维分析方法,根据切割锋面的几何形状在切割锋面上方大致定位分离的冲击的位置和形状。应用二维特征方法来计算沿切割锋面的气流场分布。计算机模拟流场分布的计算结果,可用于估计和分析不同切削条件下的切削刃质量。 [参考:21]

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