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An analysis of the shielding gas flow from a coaxial conical nozzle during high power CO2 laser welding

机译:大功率CO2激光焊接过程中同轴锥形喷嘴的保护气体流动分析

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An experimental and theoretical study on the role of the nitrogen gas stream, exiting from a conventional conical nozzle tip during a laser welding process, has been carried out. A mathematical model has been used, based on the Navier-Stokes equations which express fundamental conservation laws of mass, momentum and energy for a compressible fluid. Numerical simulations of the gas stream colliding onto a plane surface have been performed showing the effects of variations of inlet gas pressure, nozzle exit diameter and standoff distance on the density and Mach number contours, axis pressure of the gas jet and plate pressure produced on the workpiece surface. Laser welding experiments have been performed on carbon and stainless steel specimens, by varying the process parameters in the same range as in the simulations and keeping constant the incident power and the travel speed. Two different gas stream regimes were found, namely sonic and subsonic, which were experimentally verified to produce cutting and welding conditions, respectively.
机译:已经对在传统的锥形喷嘴尖端在激光焊接过程中排出的氮气流的作用进行了实验和理论研究。已经基于Navier-Stokes方程使用了数学模型,该方程表示可压缩流体的质量,动量和能量的基本守恒定律。进行了碰撞到平面上的气流的数值模拟,显示了入口气体压力,喷嘴出口直径和间隙距离的变化对密度和马赫数轮廓,气体射流的轴向压力和产生于板压力的影响。工件表面。通过在与模拟相同的范围内改变工艺参数并保持恒定的入射功率和行进速度,对碳和不锈钢样品进行了激光焊接实验。发现了两种不同的气流状态,即声波和亚声波,分别通过实验验证了其产生切割和焊接条件。

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