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논문검색

Conceptual design and fabrication test of the HTS magnets for a 500 W-class superconducting DC rotating machine under 77 K

초록

영어

Conventional direct current (DC) rotating machines are usually used for crane and press machine using high torque in metal and steel industries, because of a constant output power along variable rotating speed. A general DC motor with permanent field magnets could not increase a magnetic flux density at a gap between armature coils and field magnets. However, a superconducting DC motor has field magnets composed with high temperature superconducting (HTS) coils and it could increase the magnetic flux density at the gap to over 10 times than those of a general DC motor by control the excitation current into HTS coils. The superconducting DC motor could be operated with extremely high torque and constant output power at a low rotational speed. In this paper, a 500 W superconducting DC rotating machine was conceptually designed with a LN2 (Liquid Nitrogen) cooling method and the operation characteristics results of HTS field magnets were presented. The two no-insulation HTS magnets for a 500 Wsuperconducting DC rotating machine were fabricated. The excitation current for the HTS magnets could be controlled from 0 to 40 A. This test results will be available to design large-sized HTS magnets for a number of hundred kW class superconducting DC rotating machine under LN2 cooling system.

목차

Abstract
1. 서론
2. 초전도 직류전동기의 개념설계
2.1. 초전도직류전동기의 기본 구성도
2.2. 초전도 자석 사양
2.3 초전도 자석 FEM 설계
3. 초전도 자석의 제작
3.1. 초전도 자석의 설계
3.2. 초전도 자석의 자기장 특성
3.3. 초전도 자석의 제작 및 평가준비
4. 초전도 자석의 운전특성
4.1. 초전도 자석의 임계전류 및 자기장 특성
5. 결론
ACKNOWLEDGMENT
REFERENCES

저자정보

  • J. Choi Changwon National University, Changwon, Korea
  • S. K. Kim Korea Electrotechnology Research Institute, Changwon, Korea

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