Numerical simulation and process parameter evaluation of HVAF supersonic spraying process for octagonal tube

Octagonal tubes are commonly used type of profile in mechanical manufacturing. They have broad application prospects in aviation, rail transportation, robot frames, and medical devices. Preparing uniform wear-resistant and corrosion-resistant coatings on their surfaces is an important method to prevent their failure. High velocity air-fuel (HVAF) thermal spraying has the characteristics of high kinetic energy and low thermal load and is an important process method for preparing high-performance coatings. Achieving process control and shape control in HVAF supersonic spraying for octagonal tube parts is a bottleneck problem in the industry. This study establishes a numerical model of the HVAF supersonic spraying process for octagonal tube parts based on the computational fluid dynamics (CFD) method, and conducts a full-cycle analysis for the combustion reaction, flame jetting and turbulent state, and particle flight characteristics during the spraying process. It systematically investigates the influence of key process parameters on HVAF spraying behavior. The influence of preheating temperature, particle injection velocity, and N2 mass flow rate on flame flow characteristics and particle flight behavior are analyzed in detail. A strong mapping relationship between optimal particle flight state and process parameters is established, providing a theoretical basis for effectively controlling the spraying quality and optimizing the process. This study conducted systematic numerical simulations, providing theoretical guidance for the optimization of spraying process parameters.

相关文章

  • Activation of the YAP1/pSTAT3/NRP1 axis in peritendinous sensory nerves promotes tendon healing
    [Jiayi Wang, Fan Wang, Jingwen Liu, Yao Xiao, Zhaoyang Li, Xiaonan Liu, Peilin Zhang, Fei Wang, Wenguo Cui, Shen Liu]
  • Numerical simulation and experimental study of HVAF thermal spraying process under air circulation cooling
    [Chang Li, Pengfei Liu, Lei Feng, Haisheng Jiang, Xing Han]
  • Advances in Textile-Based Triboelectric Sensors for Physiological Signal Monitoring
    [Yunchu Shen, Zifan Jiang, Huacheng Huang, Shuai Wang, Shaokuan Wu, Jiayi Wang, Xuhui Sun, Yina Liu, Zhen Wen]
  • qq

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    ex

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    yx

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    ph

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    广告图片

    润滑集