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Modeling of the metal powder flow with carrier gas in coaxial nozzle for direct laser deposition process

机译:同轴喷嘴中载气金属粉末流动的建模,用于直接激光沉积工艺

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In direct laser deposition process, metal powder is directly fed with carrier gas through the coaxial nozzle into the melt pool created by the laser to form the solid parts. Many operational parameters of the process depend on the characteristic of the powder stream structure below the exit of the coaxial nozzle. In this paper, a computational approach is developed for the simulation of the gas-particle flow in the coaxial nozzle. By taking into account the nozzle geometry and operating parameters, such as width and inclination angle of powder passage and carrier gas velocity, the developed computational code allows the simulation, optimization and control of the delivery of the metal powders.
机译:在直接激光沉积过程中,金属粉末通过同轴喷嘴直接用载气进入由激光产生的熔池以形成固体部件。该过程的许多操作参数取决于同轴喷嘴的出口下方的粉末流结构的特性。在本文中,开发了一种计算方法,用于模拟同轴喷嘴中的气体颗粒流动。通过考虑喷嘴几何形状和操作参数,例如粉末通道的宽度和倾斜角和载气速度,所开发的计算代码允许仿真,优化和控制金属粉末的输送。

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