• 제목/요약/키워드: Equivalent external magnetic field

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해석적 방법을 이용한 반경방향 영구자석을 갖는 자기 스퍼 기어의 토크특성해석 (Torque Analysis of Magnetic Spur Gear with Radial Magnetized Permanent Magnets based on Analytical Method)

  • 민경철;최장영;성소영;박종원
    • 전기학회논문지
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    • 제64권4호
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    • pp.545-551
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    • 2015
  • This paper deals with torque analysis of magnetic spur gear with radial magnetized permanent magnets based on analytical method. The analysis is implemented in three parts: First, on the basis of magnetic vector potential and a two-dimensional (2D) polar-coordinate system, the magnetic field solution due to permanent magnet of source gear are obtained. And by using derived magnetic field solutions, the analytical solutions for external magnetic field distribution which affects load gear are obtained. Second, by using coordinate conversion, external magnetic field which is on the primary coordinate system is converted to the secondary coordinate system. Finally, the load gear is reduced to equivalent current densities, and the torque is computed on these currents in the external field of the source magnet. These analytical results are validated by comparing with the 2-D finite element analysis (FEA).

3D Transient Analysis of Linear Induction Motor Using the New Equivalent Magnetic Circuit Network Method

  • Jin Hur;Kang, Gyu-Hong;Hong, Jung-Pyo
    • KIEE International Transaction on Electrical Machinery and Energy Conversion Systems
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    • 제3B권3호
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    • pp.122-127
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    • 2003
  • This paper presents a new time-stepping 3-D analysis method coupled with an external circuit with motion equation for dynamic transient analysis of induction machines. In this method, the magneto-motive force (MMF) generated by induced current is modeled as a passive source in the magnetic equivalent network. So, by using only scalar potential at each node, the method is able to analyze induction machines with faster computation time and less memory requirement than conventional numerical methods. Also, this method is capable of modeling the movement of the mover without the need for re-meshing and analyzing the time harmonics for dynamic characteristics. From comparisons between the results of the analysis and the experiments, it is verified that the proposed method is capable of estimating the torque, harmonic field, etc. as a function of time with superior accuracy.

Magneto-thermo-elastic response of a rotating functionally graded cylinder

  • Hosseini, Mohammad;Dini, Ali
    • Structural Engineering and Mechanics
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    • 제56권1호
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    • pp.137-156
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    • 2015
  • In this paper, an analytical solution of displacement, strain and stress field for rotating thick-walled cylinder made of functionally graded material subjected to the uniform external magnetic field and thermal field in plane strain state has been studied. Stress, strain and displacement field as a function of radial coordinates considering magneto-thermo-elasticity are derived analytically. According to the Maxwell electro-dynamic equations, Lorentz force in term of displacement is obtained in cylindrical coordinates. Also, symmetric temperature distribution along the thickness of hollow cylinder is obtained by solving Fourier heat transfer equation in cylindrical coordinates. Using equation of equilibrium and thermo-mechanical constitutive equations associated with Lorentz force, a second-order inhomogeneous differential equation in term of displacement is obtained and will be solved analytically. Except Poisson's ratio, other mechanical properties such as elasticity modulus, density, magnetic permeability coefficient, heat conduction coefficient and thermal expansion coefficient are assumed to vary through the thickness according to a power law. In results analysis, non-homogeneity parameter has been chosen arbitrary and inner and outer surface of cylinder are assumed to be rich metal and rich ceramic, respectively. The effect of rotation, thermal, magnetic field and non-homogeneity parameter of functionally graded material which indicates percentages of cylinder's constituents are studied on displacement, Von Mises equivalent stress and Von Mises equivalent strain fields.

헬리콘 플라즈마의 전기적 특성 (Electrical Characteristics of Helicon Wave plasmas)

  • 윤석민;김정형;서상훈;장흥영
    • 한국진공학회지
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    • 제5권1호
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    • pp.85-92
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    • 1996
  • The external electricla characteristics of helicon wave plasmas were measured over a wide range of RF power and magnetic filed. External parameters. such as antenna voltage , current, phase shift, and interanl parameter, electron density were measured at 7MHz, 1mTorr Ar discharge . The equivalent discharge resistance and reactance, and the power transfer efficiency were calculated through these measurements. There are a helicon mode which produces high density plasma by helicon wave and a lowmode which produces low density plasma by capaictive electric field. In case of the helicon mode, the anternna voltage and current were lower than those of the low-mode. The phase difference between voltage and current decreased suddenly at the transition point from the low-mode to the helicon mode. Equivalent resistance and power efficiency increased and reactance decreased suddenly at the transition point. These results mean that the power transperred to plasma and the nutual coupling between the antenna and plasma increase as the mode changes from the low-mode to the helicon mode.

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연강 판재의 맞대기 용접에서 아크에 작용하는 자기력의 해석 (Analysis of Electro-Magnetic Force Acting on Arc Column in Butt-Joint Welding of Mild Steel Plate)

  • 배강열
    • Journal of Welding and Joining
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    • 제23권4호
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    • pp.73-80
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    • 2005
  • Arc blow being occurred by Electro-Magnetic force(EMF) during the electric arc welding prevents the formation of a sound weldment. In this study, the effects of arc position, groove size, tack weld and base plate on the EMF in a butt-joint welding of mild steel plate are analyzed by a computer simulation based on the finite element method. The EMF can be numerically identified to be caused by a difference of the magnetic flux-density between ahead of and behind the arc in case that the workpiece locates asymmetrically around the uc. When there exists an air gap of groove ahead of the arc in the welding direction, the similar magnetic force has been producted regardless of the arc position and the gap size. The tack weld alleviates the magnetic force to about one fourth at the finish end of the workpiece. The magnetic force can be also significantly reduced with the base plate to about one fifth at the start end of the workpiece containing a tack weld.

Pulsating fluid induced dynamic stability of embedded viscoelastic piezoelectric separators using different cylindrical shell theories

  • Pour, H. Rahimi;Arani, A. Ghorbanpour;Sheikhzadeh, Gh.
    • Steel and Composite Structures
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    • 제24권4호
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    • pp.499-512
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    • 2017
  • This paper deals with nonlinear dynamic stability of embedded piezoelectric nano-composite separators conveying pulsating fluid. For presenting a realistic model, the material properties of structure are assumed viscoelastic based on Kelvin-Voigt model. The separator is reinforced with single-walled carbon nanotubes (SWCNTs) which the equivalent material properties are obtained by mixture rule. The separator is surrounded by elastic medium modeled by nonlinear orthotropic visco Pasternak foundation. The separator is subjected to 3D electric and 2D magnetic fields. For mathematical modeling of structure, three theories of classical shell theory (CST), first order shear deformation theory (FSDT) and sinusoidal shear deformation theory (SSDT) are applied. The differential quadrature method (DQM) in conjunction with Bolotin method is employed for calculating the dynamic instability region (DIR). The detailed parametric study is conducted, focusing on the combined effects of the external voltage, magnetic field, visco-Pasternak foundation, structural damping and volume percent of SWCNTs on the dynamic instability of structure. The numerical results are validated with other published works as well as comparing results obtained by three theories. Numerical results indicate that the magnetic and electric fields as well as SWCNTs as reinforcer are very important in dynamic instability analysis of structure.

캡슐 내시경의 외부 수신기용 UWB 안테나 설계 (Design of UWB Antenna for the External Receiver of Capsule Endoscopy)

  • 김홍석;오민석;천창율
    • 한국전자파학회논문지
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    • 제16권8호
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    • pp.790-796
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    • 2005
  • 본 논문에서는 캡슐 내시경의 무선통신이 이루어지기 위한 환경 연구와 더불어 그에 적합한 수신 안테나를 설계하였다. 제안된 안테나는 인체와 같은 multi-loss layer환경에서 전파 손실을 최소화 하고 magnetic field를 이용하기 위해 루프 안테나로 설계했다. 주파수 대역은 인체 내 전파 손실을 고려하여 $400\~500$ MHz이고 FCC 규정에 따라 인체 각각의 조직에 대한 유전율과 도전율을 추출했다. 이를 하나의 등가 모델로 설정하고 그에 따른 유전율과 도전율을 계산해서 인체를 대신할 수 있는 수용액을 제조하였다. 전파 손실이 심한 인체 내에서 캡슐이 이동함에 따라 수신 레벨이 급격히 감소하기 때문에 배열 안테나가 요구된다. 1 mW의 신호를 송신하는 송신 안테나 위치에 상관없이 배열 안테나의 신호 레벨은 평균 -60 dBm 정도로 충분한 신호 검출이 가능한 것을 확인했다.

무선주파수 간섭 측정용 차폐된 Printed Spiral Coil(PSC) 프로브의 대역폭 개선 설계 (Bandwidth-Improved Design of Shielded Printed Spiral Coil Probes for Radio-Frequency Interference Measurement)

  • 김경민;송익환
    • 한국전자파학회논문지
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    • 제29권5호
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    • pp.359-365
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    • 2018
  • 본 논문에서는 기존 단품 Printed Spiral Coil(PSC)의 외부 노이즈 결합의 저감을 위한 차폐 구조와 차폐된 PSC의 대역폭 개선을 위한 설계법이 제안되었다. 차폐 구조가 적용될 경우, PSC와 차폐 구조 사이의 기생 커패시턴스에 의한 공진현상으로 인해 단품 PSC 대비 전달함수 대역폭에 한계를 가지게 되며, Radio-Frequency Interference(RFI) 노이즈 원으로 가정된 $50{\Omega}$ 마이크로스트립 라인과의 전달함수 시뮬레이션을 통해 이를 확인하였다. 차폐된 PSC의 등가회로 모델을 통해 대역폭을 개선할 수 있는 방안을 제시하고, 3D field simulation을 이용한 사례 연구를 통해 방안의 타당성을 검증하였다. 제시된 방안을 기반으로 차폐 구조가 적용된 PSC 설계의 최적화를 수행하였으며, 측정 검증을 통해 전달함수가 보존되는 범위 내에서 전달함수의 대역폭이 개선됨을 확인하였다.