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VISUALIZATION OF FLOW SEPARATION INSIDE CUT KERF DURING LASER CUTTING OF THICK SECTIONS

机译:厚截面激光切割过程中切割截止圈内的流动分离的可视化

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The behavior of oxygen gas not only determines the oxidation heat input but also affects the removal of molten metal during laser-oxygen cutting. Flow separation inside the cut kerf is the major problem for the deterioration of cut ability and cut quality, especially for cutting thick steel sections, because it significantly weakens the shear stress on molten slag and changes the pressure gradient along the cut front. There have been some researches on flow separation using numerical simulation and model kerf. However, many experimental details and results are unclear, and the numerical simulation is questionable due to lack of experimental verification. In this paper, a model kerf is set up based on the previous results of observation and cutting trials. High resolution and high speed Schlieren visualization is used to observe the formation of flow separation in the model kerf. Stand-off distance, inlet pressure, cut front slope, nozzle displacement, kerf width and nozzle tilting angle are used as variables for Schlieren visualization of flow separation for both a conical subsonic and a MLN supersonic nozzle. The effect of the above parameters on the position and the pattern of flow separation is discussed based on gas dynamic theory. It is found that nozzle displacement, kerf width and nozzle tilting angle are the key factors for flow separation. Possible strategies for controlling flow separation are also proposed for both subsonic and supersonic nozzles.
机译:氧气的行为不仅决定了氧化热输入,还影响激光 - 氧切割过程中熔融金属的去除。切口内部的流动分离是降低能力劣化和切割质量的主要问题,特别是用于切割厚厚的钢部分,因为它显着削弱了熔渣上的剪切应力,并使压力梯度沿切割前部变化。使用数值模拟和模型Kerf对流动分离有一些研究。然而,许多实验细节和结果尚不清楚,并且由于缺乏实验验证,数值模拟是值得怀疑的。在本文中,基于先前的观察结果结果建立了一个模型Kerf。高分辨率和高速Schlieren可视化用于观察模型Kerf中流动分离的形成。脱扣距离,入口压力,剪切前倾,喷嘴位移,Kerf宽度和喷嘴倾斜角度用作锥形子系统和MLN超声喷嘴的流量分离的Schlieren可视化的变量。基于气体动态理论讨论了上述参数对流体分离的位置和模式的影响。发现喷嘴位移,Kerf宽度和喷嘴倾斜角是流动分离的关键因素。还提出了用于控制流动分离的可能策略,用于亚音速和超音速喷嘴。

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