Recent Trends in Additive Manufacturing and Topology Optimization of Reluctance Machines

被引:6
作者
Hussain, Shahid [1 ]
Kallaste, Ants [1 ]
Vaimann, Toomas [1 ]
机构
[1] Tallinn Univ Technol, Dept Elect Power Engn & Mechatron, EE-19086 Tallinn, Estonia
关键词
additive manufacturing; topology optimization; level set; synchronous reluctance machine; switch reluctance machine; ON-OFF method; material density; genetic algorithm; power bed fusion; binder jetting; soft magnetic materials; LEVEL SET; ELECTRICAL MACHINES; COGGING TORQUE; IPM MOTOR; DESIGN; ROTOR; OPPORTUNITIES; SHAPE;
D O I
10.3390/en16093840
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Additive manufacturing (AM) or 3D printing has opened up new opportunities for researchers in the field of electrical machines, as it allows for more flexibility in design and faster prototyping, which can lead to more efficient and cost-effective production. An overview of the primary AM techniques utilized for designing electrical machines is presented in this paper. AM enables the creation of complex and intricate designs that are difficult or impossible to achieve using traditional methods. Topology Optimization (TO) can be used to optimize the design of parts for various purposes such as weight, thermal, material usage and structural performance. This paper primarily concentrates on the most recent studies of the AM and TO of the reluctance machines. The integration of AM with TO can enhance the design and fabrication process of magnetic components in electrical machines by overcoming current manufacturing limitations and enabling the exploration of new design possibilities. The technology of AM and TO both have limitations and challenges which are discussed in this paper. Overall, the paper offers a valuable resource for researchers and practitioners working in the field of AM and TO of electrical machines.
引用
收藏
页数:19
相关论文
共 103 条
  • [21] Additive Manufacturing and Testing of a Soft Magnetic Rotor for a Switched Reluctance Motor
    Gargalis, Leonidas
    Madonna, Vincenzo
    Giangrande, Paolo
    Rocca, Roberto
    Hardy, Mark
    Ashcroft, Ian
    Galea, Michael
    Hague, Richard
    [J]. IEEE ACCESS, 2020, 8 : 206982 - 206991
  • [22] Gauthey T, 2021, Arxiv, DOI arXiv:2107.04825
  • [23] Opportunities and Challenges of Utilizing Additive Manufacturing Approaches in Thermal Management of Electrical Machines
    Ghahfarokhi, Payam Shams
    Podgornovs, Andrejs
    Kallaste, Ants
    Cardoso, Antonio J. Marques
    Belahcen, Anouar
    Vaimann, Toomas
    Tiismus, Hans
    Asad, Bilal
    [J]. IEEE ACCESS, 2021, 9 : 36368 - 36381
  • [24] Moving Toward a Reliability-Oriented Design Approach of Low-Voltage Electrical Machines by Including Insulation Thermal Aging Considerations
    Giangrande, Paolo
    Madonna, Vincenzo
    Nuzzo, Stefano
    Galea, Michael
    [J]. IEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION, 2020, 6 (01) : 16 - 27
  • [25] Gibson, 2021, ADDITIVE MANUFACTURI
  • [26] Gibson I., 2015, ADDITIVE MANUFACTURI, DOI [10.1007/978-1-4939-2113-3, DOI 10.1007/978-1-4939-2113-3]
  • [27] Gibson I., 2016, Additive Manufacturing Technologies 3d Printing, Rapid Prototyping, and Direct Digital Manufacturing, V2nd
  • [28] Simultaneous Magnetic and Structural Topology Optimization of Synchronous Reluctance Machine Rotors
    Guo, Feng
    Brown, Ian P.
    [J]. IEEE TRANSACTIONS ON MAGNETICS, 2020, 56 (10)
  • [29] Additive manufacturing: Technology, applications and research needs
    Guo N.
    Leu M.C.
    [J]. Frontiers of Mechanical Engineering, 2013, 8 (3) : 215 - 243
  • [30] Huang PW, 2018, IEEE T MAGN, V54, DOI [10.1109/INTMAG.2018.8508376, 10.1109/TMAG.2018.2849710]