• Title/Summary/Keyword: 자기차폐

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Nondestructive Evaluation System using SQUID in Magnetically Un-shielded Environment (비자기 차폐 환경에서의 SQUID를 이용한 비파괴 평가 시스템에 대한 연구)

  • Chung, Soon-Hee;Hwang, Yun-Seok;Choi, Hee-Seok;Kim, Jin-Tae;Lim, Hae-Ryong;Kim, In-Seon;Kwon, Hyuk-Chan;Park, Yong-Ki;Park, Jong-Chul;Lee, Soon-Gul;Lee, Dong-Hoon;Kim, Dong-Ho
    • 한국초전도학회:학술대회논문집
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    • v.9
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    • pp.54-57
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    • 1999
  • 본 연구에서는 SQUID를 이용한 비파괴 평가 시스템을 제작, 측정하였다. 이 시스템은 비자기 차폐 환경에서 작동할 수 있도록 설계하였고, 측정 자기 센서로는 dc 및 rf-SQUID gradiometer를 사용하였다. 비자기 차폐 환경에서 ${\sim}$nT의 미세 자기 신호를 검출하였고, 공간적으로 변화하는 외부 자기 신호를 측정, 분석하였다. 또한, 측정된 자기 신호를 통해 dc-SQUID와 rf-SQUID에 대한 비교를 했다.

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Evaluation of the Utility of Self Produced MRI Radiofrequency Shielding Material (자체 제작한 자기공명영상 고주파 차폐체의 유용성 평가)

  • Lee, Jin-Hoe;Lee, Bo-Woo
    • Journal of the Korea Convergence Society
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    • v.11 no.11
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    • pp.89-94
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    • 2020
  • This paper proposes a better shielding method to over sampling technique. The new method uses aluminum foil for RF shielding. As a result of the phantom test, when the over-sampling technique was applied, the aliasing artifact was reduced by about 94% compared to before the application, and the case where the aluminum shielding band was applied was also reduced by about 92% compared to before application. In addition, the scan time also increased by more than 3 times in the case of the over-sampling technique, while it was found that there was no change from before the application of the aluminum shielding band Therefore, it was confirmed that the shielding band using aluminum foil can effectively remove aliasing artifacts without increasing the scan time..

Design of Magnetic Field Generator based on Magnetic Shield Effect for Stiffness Control of Magnetorheological Material (자기유변 물질의 강성제어를 위한 자기 차폐 원리 기반의 자기장 발생기 설계)

  • Jang, Dae Ik;Park, Jae Eun;Kim, Young-Keun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.41 no.9
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    • pp.861-868
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    • 2017
  • In this study, a novel magnetic field generator, using a shielding effect for controlling the dynamic stiffness and damping of magnetorheological gels, is proposed. A magnetorheological gel is a smart material that can alter its stiffness and damping, and it can be used as a vibration absorber and in vehicle suspension. It is necessary to control the magnetic field to use magnetorheological gels in various applications. There are two types of magnet field generators, namely the electromagnet and permanent magnet, and the electromagnet is generally used in practical applications. However, owing to its limitations, the electromagnet is not suitable for long-term use. Therefore, in this paper, a novel magnetic field generator is proposed to address such problems for use in real applications.

Magnetic Shielding with Thin Magnetic Materials near Power Cables (박판 자성 재료를 이용한 전력 케이블 인근의 자기장 차폐)

  • Kim, Sang-Beom;Soh, Joon-Young;Shin, Koo-Yong;Jeong, Jin-Hye;Myung, Sung-Ho
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.20 no.7
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    • pp.639-647
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    • 2009
  • In this work, wrapping conductors with thin magnetic materials is proposed as a magnetic shielding method. The 0.1 mm thick metal sheets of mu-metal, grain-oriented electrical steel, and non-oriented electrical steel were produced from commercial alloy sheets through cold rolling and followed high temperature annealing. In case of 3-phase electric currents, mu-metal was the best in shielding performance at a B-field magnitude of about 100 ${\mu}T$, whereas silicon steels were better than mu-metal at a B-magnitude over 500 ${\mu}T$. In addition, wrapping with silicon steel(inner) together with mu-metal(outer) resulted in a shielding factor less than 0.1 even at 500 ${\mu}T$. These results are due to changes in hierarchy of magnetic permeabilities of the materials with increasing magnetic field strength. In case of single-phase electric current, B-magnitude outside the magnetic shell was rather increased compared to the unshielded case. This result is explained by vector composition of B-fields near magnetic shielding materials.

Electromagnetic wave Shielding Materials for the Wireless Power Transfer Module in Mobile Handset (휴대단말기 무선전력 전송모듈용 전자기파 차폐소재)

  • Bae, Seok;Choi, Don-Chul;Hyun, Soon-Young;Lee, Sang Won
    • Journal of the Korean Magnetics Society
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    • v.23 no.2
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    • pp.68-76
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    • 2013
  • Currently, wireless power transmission technology based on magnetic induction was employed in battery charger for smart phone application. The system consists of wireless power transmitter in base station and receiver in smart phone. Size and thickness of receiver was strictly limited in the newest smart phone. In order to achieve high efficiency of a tiny small wireless power receiver module, sub-millimeter thick electromagnetic wave shielding sheet having high permeability and Q was essential component. It was found that magnetic field from transmitter to receiver can be intensified by sufficient shielding cause to minimize leakage magnetic flux by those magnetic properties. This leads to high efficiency of wireless power transmission and protects crucial integrated circuit of main board from electromagnetic noise. The important soft magnetic materials were introduced and summarized for the current small-power wireless power charger and NFC application and mid-power home appliance and high-power automotive application in the near future.