多通道激光熔覆喷嘴的粉末汇聚特性模拟研究

    Simulation Study on Convergence Properties of Powder Flow in Multi-Channel Laser Cladding Nozzle

    • 摘要: 激光熔覆过程中粉末利用率与熔覆层的成型尺寸、加工效率及综合性能密切相关。基于欧拉-拉格朗日法描述金属颗粒建立了三维粉末流场模型,对气-固两相流体流出多通道熔覆喷嘴后的汇聚特性进行了分析。结果表明:沿送粉管方向的金属颗粒的利用率总体上随载气流量和颗粒速度的增加而增加,发生偏转的颗粒其利用率变化情况有所差异,粒径较小的颗粒有较高利用率且温度也较高。

       

      Abstract: The forming size, processing efficiency and comprehensive performance of the cladding layer were closely related to the utilization ratio of powder in the process of laser cladding. Based on the Euler-Lagrange method, the description of metal particles was carried out, a three-dimensional powder flow analysis model was established. The convergence properties of gas-solid two-phase flow after flowing out of the multi-channel cladding nozzle was analyzed. The results indicate that the utilization ratio of metal particles in the direction of the powder feeding tube generally increases with the increase of carrier gas flow rate and the particle velocity. The utilization of deflected particles is not uniformly the same. The smaller particles have higher utilization ratio and temperature.

       

    /

    返回文章
    返回