Fabrication and Test of HTS Magnet for Induction Heating Device in Aluminum Extrusion Processing

被引:6
|
作者
Ito, Tetsuya [1 ]
Fukui, Satoshi [2 ]
Kawashima, Hiroshi [1 ]
Ogata, Yasuhiro [1 ]
Furuse, Mitsuho [3 ]
Watanabe, Tomonori [4 ]
Nagaya, Shigeo [4 ]
Ogawa, Jun [2 ]
机构
[1] Teral Inc, Fukuyama, Hiroshima 7200003, Japan
[2] Niigata Univ, Fac Engn, Nishi Ku, Niigata 9502181, Japan
[3] Natl Inst Adv Ind Sci & Technol, Tsukuba, Ibaraki 3058568, Japan
[4] Chubu Elect Power Co Inc, Nagoya, Aichi 4598522, Japan
关键词
Coils; High-temperature superconductors; Magnetic cores; Iron; Aluminum; Billets; Superconducting magnets; Aluminum billet heater; DC induction heating; HTS magnet; DESIGN;
D O I
10.1109/TASC.2021.3136801
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper reported the fabrication and the test results of the high temperature superconducting (HTS) magnet developed for the aluminum billet heater for aluminum extrusion processing. In this magnet, the HTS coils were combined with iron cores, because the required magnetic field in the working region was about 1T. Two HTS coils wound directly on the convex shape iron cores were fabricated. The HTS coils were made by the no-insulation winding of REBCO tape with the YOROI-coil technique. Each of them was separately installed in an individual cryostat. Two HTS coils with iron cores were disposed oppositely to each other and were magnetically connected by a C-shape yoke placed in room temperature. The HTS coil was cooled down to about 15 K by the GM cryocooler in the initial cooling. The magnetic field of 1.06 T at the center of the heating region was stably generated with the rated current of 200 A. It was also demonstrated that the HTS magnet could be charged up to 300 A without quench. According to the observation of the electromagnetic force direction from the outside of the cryostat, it was confirmed the validity of the force balance design of the magnet.
引用
收藏
页数:5
相关论文
共 21 条
  • [1] INDUCTION-HEATING FOR ALUMINUM EXTRUSION
    不详
    ELECTRICAL REVIEW, 1977, 201 (21): : 38 - &
  • [2] Fabrication and test of an HTS magnet consisted of BSCCO pancake windings
    Lee, Kwang Youn
    Kang, Myung Hun
    Lee, Yong Seok
    Cha, Gueesoo
    Kim, Do Hyung
    Ahn, Tae Kil
    2007 INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS, VOLS 1-4, 2007, : 731 - 734
  • [3] Heating Characteristics of a HTS DC Induction Heater for Aluminum Billets
    Gao, H.
    Wang, Y.
    Xu, D.
    Shi, Y.
    Li, Z.
    Jin, Z.
    Hong, Z.
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2015, 25 (03)
  • [4] Fabrication and test results of 2 T conduction cooled HTS magnet
    Kim, S.
    Sohn, M. H.
    Sim, K.
    Kim, H. M.
    Seong, K. C.
    Kwon, Y. K.
    Park, H. Y.
    Eom, B. Y.
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2009, 469 (15-20): : 1799 - 1803
  • [5] Fabrication and test results of HTS magnet for a superconducting property measurement system
    Sohn, M. H.
    Kim, S.
    Sim, K. D.
    Kim, H. M.
    Bae, J. H.
    Ha, D. W.
    Park, H. Y.
    Eom, B. Y.
    Choi, S.
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2011, 471 (21-22): : 1449 - 1453
  • [6] Fabrication and Charging Test of HTS Field Windings Using HTS Contactless Rotary Excitation Device
    Kim, Ji Hyung
    Quach, Huu Luong
    Boo, Chang-Jin
    Yoon, Yong Soo
    Jeon, Haeryong
    Han, Seunghak
    Ko, Tae Kuk
    Kim, Hyung-Wook
    Jo, Young-Sik
    Park, Heui Joo
    Lee, Jihoon
    Lee, Haigun
    Kim, Ho Min
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2019, 29 (05)
  • [7] Design of a superconducting saddle magnet for DC induction heating of aluminum billets
    Morandi, Antonio
    Fabbri, Massimo
    Ribani, Pier Luigi
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2008, 18 (02) : 816 - 819
  • [8] Fabrication and test of a 60-kA HTS current lead for fusion magnet system
    Ando, T
    Isono, T
    Kawano, K
    Hamada, K
    Matsui, K
    Nunoya, Y
    Hara, E
    Kato, T
    Okuno, K
    Bono, T
    Tomioka, A
    Sanuki, Y
    Ito, I
    Sakaki, K
    Konno, M
    Ueda, T
    ADVANCES IN CRYOGENIC ENGINEERING, VOLS. 49A AND B, 2004, 710 : 929 - 936
  • [9] Design and Performance Analysis of an Iron Core-based No-Insulation HTS Magnet for HTS DC Induction Heating Machine
    Choi, Jongho
    Kim, Kwangmin
    Kim, Sung-Kyu
    Kim, Seokho
    Sim, Kideok
    Park, Minwon
    Yu, In-Keun
    PROCEEDINGS OF THE 28TH INTERNATIONAL SYMPOSIUM ON SUPERCONDUCTIVITY (ISS 2015), 2016, 81 : 149 - 153
  • [10] Systematic approach to optimal design of induction heating installations for aluminum extrusion process
    Zimin, L. S.
    Sorokin, A. G.
    Egiazaryan, A. S.
    Filimonova, O. V.
    INTERNATIONAL CONFERENCE ON MECHANICAL ENGINEERING, AUTOMATION AND CONTROL SYSTEMS 2017, 2018, 327