Thermal optimization of alloy additive manufacturing process and visual design of metal process products based on edge computing

被引:0
|
作者
Liu, Fanyu [1 ]
机构
[1] Xian Aeronaut Inst, Xian 710077, Peoples R China
关键词
Edge computing; Alloy material; Additive manufacturing; Thermal energy optimization; Metal process; Product visual design; MODE LASER;
D O I
10.1016/j.tsep.2024.102924
中图分类号
O414.1 [热力学];
学科分类号
摘要
Alloy additive manufacturing technology has been widely used in aerospace, medical equipment and automobile manufacturing. The purpose of this study is to explore the thermal energy optimization scheme in the process of alloy additive manufacturing based on edge computing technology, and to display the metal process products in an all-round way through visual design, so as to promote the knowledge and practice of thermal energy management in the industry. In this paper, the edge computing platform is used to monitor the heat energy data generated in additive manufacturing process in real time, and the heat energy distribution is analyzed with machine learning algorithm. By establishing thermal energy optimization model, adjusting manufacturing parameters to reduce energy consumption, improve material utilization and product quality. At the same time, using visual design technology, the optimization process and results are graphically represented, which provides intuitive decision basis for engineers. The experimental results show that the thermal energy optimization scheme based on edge computing significantly improves the thermal energy efficiency of the alloy additive manufacturing process, and significantly reduces the thermal energy loss. Through the visual design, relevant personnel can understand the thermal energy distribution and process changes more clearly, and promote the collaboration between multiple departments. This study reveals the application potential of edge computing in alloy additive manufacturing and provides an effective thermal optimization strategy.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Additive Manufacturing: Alloy Design and Process Innovations
    Prashanth, Konda Gokuldoss
    Wang, Zhi
    MATERIALS, 2020, 13 (03)
  • [2] Solidification and process optimization in metal additive manufacturing
    Koizumi Y.
    Koizumi, Yuichiro, 1600, Japan Institute of Electronics Packaging (23): : 446 - 451
  • [3] INTEGRATED THERMAL PROCESS OPTIMIZATION OF ALLOY 718PLUS® FOR ADDITIVE MANUFACTURING
    Gong, Jiadong
    Deutchman, Hallee Z.
    Peralta, Alonso
    Snyder, Dave
    Enright, Michael P.
    McFarland, John
    Neumann, James
    Sebastian, Jason
    Olson, Greg
    PROCEEDINGS OF THE 13TH INTENATIONAL SYMPOSIUM OF SUPERALLOYS (SUPERALLOYS 2016), 2016, : 1031 - 1040
  • [4] Impacts of the settings in a design for additive manufacturing process based on topological optimization
    Morretton, Elodie
    Vignat, Frederic
    Pourroy, Franck
    Marin, Philippe
    INTERNATIONAL JOURNAL OF INTERACTIVE DESIGN AND MANUFACTURING - IJIDEM, 2019, 13 (01): : 295 - 308
  • [5] Impacts of the settings in a design for additive manufacturing process based on topological optimization
    Elodie Morretton
    Frédéric Vignat
    Franck Pourroy
    Philippe Marin
    International Journal on Interactive Design and Manufacturing (IJIDeM), 2019, 13 : 295 - 308
  • [6] In-situ monitoring additive manufacturing process with AI edge computing
    Zhu, Wenkang
    Li, Hui
    Shen, Shengnan
    Wang, Yingjie
    Hou, Yuqing
    Zhang, Yikai
    Chen, Liwei
    OPTICS AND LASER TECHNOLOGY, 2024, 171
  • [7] Numerical simulation process parameter optimization in metal additive manufacturing for getting better quality of products
    Paramasivam, Sundar Singh Sivam Sundarlingam
    Sawant, Laxmikant Damodar
    Natarajan, Harshavardhana
    Sumanth, Ullengala
    Singh, Krishna Pratap
    MATERIALS TODAY-PROCEEDINGS, 2022, 66 : 850 - 857
  • [8] Thermodynamics-guided alloy and process design for additive manufacturing
    Sun, Zhongji
    Ma, Yan
    Ponge, Dirk
    Zaefferer, Stefan
    Jaegle, Eric A.
    Gault, Baptiste
    Rollett, Anthony D.
    Raabe, Dierk
    NATURE COMMUNICATIONS, 2022, 13 (01)
  • [9] Thermodynamics-guided alloy and process design for additive manufacturing
    Zhongji Sun
    Yan Ma
    Dirk Ponge
    Stefan Zaefferer
    Eric A. Jägle
    Baptiste Gault
    Anthony D. Rollett
    Dierk Raabe
    Nature Communications, 13
  • [10] Process parameter optimization of metal additive manufacturing: a review and outlook
    Chia, Hou Yi
    Wu, Jianzhao
    Wang, Xinzhi
    Yan, Wentao
    JOURNAL OF MATERIALS INFORMATICS, 2022, 2 (04):