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Numerical simulation of metallic powder flow in a coaxial nozzle in laser direct metal deposition

机译:激光直接金属沉积中同轴喷嘴中金属粉末流动的数值模拟

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To investigate the influencing rule of deposited layer's shape on coaxial powder feeding flow field in the metal forming process, gassolid two-phase flow theory is used to analyze effect of deposited layers on powder concentration distribution and variation of focus distance from nozzle outlet to convergence point (the center of the convergent zone). Different height and width parameters of deposited layers were chosen to calculate the powder concentration distribution, consequently, and also their effect on additive height of single-trace cladding layer was studied by experimental investigations. The numerical results are in good agreement with experimental observations. The results indicated that additive height of cladding layer was non-uniform under uneven wall thickness of parts fabrication condition. Consequently, the surface of deposited layers with uneven thickness is not smooth, and hence affects surface forming quality.
机译:为了研究沉积层的形状对金属成形过程中同轴粉末进料流场的影响规律,采用气固两相流理论分析了沉积层对粉末浓度分布和喷嘴出口至会聚点聚焦距离变化的影响。 (收敛区域的中心)。因此,选择不同的沉积层高度和宽度参数来计算粉末浓度分布,并通过实验研究了它们对单迹熔覆层添加高度的影响。数值结果与实验结果吻合良好。结果表明,在零件制造条件下壁厚不均匀的情况下,包层的附加高度不均匀。因此,具有不均匀厚度的沉积层的表面不光滑,并因此影响表面形成质量。

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