Research on Laser Melting Powder Layer Shrinkage Process Based on Moving Mesh Technology

被引:0
|
作者
Tang, Xianjun [1 ]
Shu, Yufeng [1 ]
机构
[1] College of Intelligent Manufacturing, DongGuan Polytechnic, GuangGong, DongGuan,523808, China
关键词
Selective laser melting;
D O I
10.2478/amns-2024-2987
中图分类号
学科分类号
摘要
During the melting and solidification process, volume shrinkage occurs in the corresponding parts of the selected laser melted powder layer, which further affects the temperature distribution of the powder layer. It is urgent to conduct corresponding analysis and research on the influencing factors of its process parameters. This paper is based on the finite element method and adopts the moving mesh technology to establish an equivalent model for the shrinkage of the selected laser melting powder layer. The influence of shrinkage on the simulated temperature distribution of the selected laser melting is analyzed, and the temperature field distribution of the powder layer under different laser powers and scanning speeds is further analyzed, verifying the feasibility of the model. The results show that by using an appropriate grid movement speed, the powder layer shrinkage of selected laser melting and forming can be effectively simulated under different laser powers and scanning speeds. The shrinkage model can better simulate the temperature field distribution of selected laser melting. This method provides a new approach for achieving equivalent simulation of volume shrinkage of powder layer during selective laser melting and forming process. © 2024 Xianjun Tang et al., published by Sciendo.
引用
收藏
相关论文
共 50 条
  • [31] Study on the numerical simulation of laying powder for the selective laser melting process
    Liu Cao
    The International Journal of Advanced Manufacturing Technology, 2019, 105 : 2253 - 2269
  • [32] Selective Laser Melting Process of Fe-Ni Metal Powder
    Liu Bin Bai Peikang Li Yuxin North University of China Taiyuan China
    稀有金属材料与工程, 2011, 40(S3) (S3) : 241 - 244
  • [33] Measurement of actual powder layer height and packing density in a single layer in selective laser melting
    Wischeropp, Tim Marten
    Emmelmann, Claus
    Brandt, Milan
    Pateras, Aaron
    ADDITIVE MANUFACTURING, 2019, 28 : 176 - 183
  • [34] Characterization of deposited layer fabricated by direct laser melting process
    Jeong-Hwan Jang
    Byeong-Don Joo
    Chester J. Van Tyne
    Young-Hoon Moon
    Metals and Materials International, 2013, 19 : 497 - 506
  • [35] Research on Preheating of Titanium Alloy Powder in Electron Beam Melting Technology
    He Weiwei
    Jia Wenpeng
    Liu Haiyan
    Tang Huiping
    Kang Xinting
    Huang Yu
    RARE METAL MATERIALS AND ENGINEERING, 2011, 40 (12) : 2072 - 2075
  • [36] Characterization of deposited layer fabricated by direct laser melting process
    Jang, Jeong-Hwan
    Joo, Byeong-Don
    Van Tyne, Chester J.
    Moon, Young-Hoon
    METALS AND MATERIALS INTERNATIONAL, 2013, 19 (03) : 497 - 506
  • [37] Process Optimization and Performance Investigation in Selective Laser Melting of Large Layer-Thickness 316L Powder
    Yang Jin
    Liu Yude
    Shi Wentian
    Zhang Feifei
    Qi Bin
    Han Dong
    LASER & OPTOELECTRONICS PROGRESS, 2019, 56 (01)
  • [38] Partial melting and resolidification of single-component metal powder with a moving laser beam
    Xiao, Bin
    Zhang, Yuwen
    HT2005: PROCEEDINGS OF THE ASME SUMMER HEAT TRANSFER CONFERENCE 2005, VOL 3, 2005, : 315 - 325
  • [39] Melting and solidifying behavior in single layer selective laser of pure tungsten powder
    Zhou X.
    Liu W.
    1600, Science Press (43):
  • [40] Powder, process parameters and heat treatment conditions for Laser Beam Melting of LaFeSi-based alloys
    Wieland, Sandra
    Kagathara, Jwalant
    Gaertner, Eric
    Uhlenwinkel, Volker
    Steinbacheir, Matthias
    THERMAG VIII - INTERNATIONAL CONFERENCE ON CALORIC COOLING, 2018, : 27 - 32