APPLIED LASER, Volume. 44, Issue 4, 49(2024)

Numerical Simulation Study on the Problem of Powder Panting in Carrier Gas Transportation by Laser Cladding Based on CFD-DEM

Zhang Yuduo1,2, Xing Fei1,2、*, Liu Weijun1, Bian Hongyou1, and Suo Hongbo2
Author Affiliations
  • 1Shenyang University of Technology, Shenyang 110870, Liaoning, China
  • 2Nanjing Zhongke Raycham Laster Technology Company, Nanjing 210038, Jiangsu, China
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    References(13)

    [1] [1] KOVALEV O B, KOVALEVA I O, SMUROV I Y. Numerical investigation of gas-disperse jet flows created by coaxial nozzles during the laser direct material deposition[J]. Journal of Materials Processing Technology, 2017, 249: 118-127.

    [2] [2] SHI J J, ZHU P, FU G Y, et al. Geometry characteristics modeling and process optimization in coaxial laser inside wire cladding[J]. Optics Laser Technology, 2018, 101: 341-348.

    [4] [4] ZHANG B C, CODDET C. Numerical study on the effect of pressure and nozzle dimension on particle distribution and velocity in laser cladding under vacuum base on CFD[J]. Journal of Manufacturing Processes, 2016, 23: 54-60.

    [5] [5] KOVALEV O B, BEDENKO D V, ZAITSEV A V. Development and application of laser cladding modeling technique: From coaxial powder feeding to surface depositionand bead formation[J]. Applied Mathematical Modelling, 2018, 57: 339-359.

    [6] [6] GUO S R, YIN Q Q, CUI L J, et al. Simulation and experimental research based on carrier gas flow rate on the influence of four-channel coaxial nozzle flow field[J]. Measurement and Control, 2020, 53(9/10): 1571-1578.

    [7] [7] POLYANSKIY T A, ZAITSEV A V, ERMOLAEV G V. Studying the process of powder transportation during laser cladding with a coaxial nozzle[J]. Journal of Physics: Conference Series, 2019, 1404(1): 012037.

    [9] [9] LAN S, SOMMERFELD M. Numerical prediction of particle erosion of pipe bends[J]. Advanced Powder Technology, 2019, 30(2): 366-383.

    [10] [10] LIU D D, DU K J, QIN S, et al. Numerical simulation of flow characteristics in vertical elbows of pneumatic conveying[J]. Vibroengineering PROCEDIA, 2021, 39: 146-151.

    [11] [11] ALKASSAR Y, AGARWAL V K, PANDEY R K, et al. Analysis of dense phase pneumatic conveying of fly ash using CFD including particle size distribution[J]. Particulate Science and Technology, 2021, 39(3): 322-337.

    [12] [12] ZHOU J W, SHANGGUAN L J, GAO K D, et al. Numerical study of slug characteristics for coarse particle dense phase pneumatic conveying[J]. Powder Technology, 2021, 392: 438-447.

    [15] [15] CHUNG Y C, OOI J Y. A study of influence of gravity on bulk behaviour of particulate solid[J]. Particuology, 2008, 6(6): 467-474.

    [16] [16] LI H, TOMITA Y. Anexperimental study of swirling flow pneumatic conveying system in a horizontal pipeline[J]. Journal of Fluids Engineering, 1996, 118(3): 526-530.

    [17] [17] YAN Z, WILKINSON S K, STITT E H, et al. Discrete element modelling (DEM) input parameters: Understanding their impact on model predictions using statistical analysis[J]. Computational Particle Mechanics, 2015, 2(3): 283-299.

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    Zhang Yuduo, Xing Fei, Liu Weijun, Bian Hongyou, Suo Hongbo. Numerical Simulation Study on the Problem of Powder Panting in Carrier Gas Transportation by Laser Cladding Based on CFD-DEM[J]. APPLIED LASER, 2024, 44(4): 49

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    Paper Information

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    Received: Oct. 20, 2022

    Accepted: Dec. 13, 2024

    Published Online: Dec. 13, 2024

    The Author Email: Xing Fei (siasky@163.com)

    DOI:10.14128/j.cnki.al.20244404.049

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