• 제목/요약/키워드: domain wall motion

검색결과 101건 처리시간 0.028초

적층형 세라믹 액츄에이터의 세라믹-전극간 계면이 전기적 특성에 미치는 영향에 대한 연구 (Effect of Ceramic-Electrode Interface on the Electrical Properties of Multilayer Ceramic Actuators)

  • 하문수;정순종;송재성;이재신
    • 한국전기전자재료학회논문지
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    • 제15권10호
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    • pp.896-901
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    • 2002
  • The polarization and strain behavior of multilayer ceramic actuators fabricated by tape casting using a PNN-PZT ceramics were investigated in association with electrode size and internal layer number. Spontaneous polarization and strain decreased with increasing electrode size. In addition, the increase of internal layer number brought reduced spontaneous polarization and increased the field-induced strain. Because the actuators structure is designed to stack ceramic layer and electrode layer alternatively, the ceramic-electrode interfaces may act as a resistance to motion of domain wall. To analyze the effect of ceramic-electrode interface, the diffraction intensity ratio of (002) to (200) planes was calculated from X-ray diffraction patterns of samples subjected to a voltage of 200 V. The diffraction intensity ratio of (002) to (200) planes was decreased with increasing electrode size and internal layer number. The diffraction intensity ratio and straining behavior analyses indicate that the Polarization and strain were affected by the amount of 90°domain decreasing with increasing electrode size and internal layer number. Consequently, the change of polarization and displacement with respect to electrode size and layer number is likely to be caused by readiness of the domain wall movement around the interface.

Current-Driven Domain-Wall Depinning in Pt/CoFe/Pt Nanowires with Perpendicular Magnetic Anisotropy

  • Kim, Kab-Jin;Lee, Jae-Chul;Choe, Sug-Bong
    • Journal of Magnetics
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    • 제14권3호
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    • pp.101-103
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    • 2009
  • The spin transfer torque efficiency was determined experimentally by observing the current-driven domainwall depinning of Pt/CoFe/Pt nanowires with perpendicular magnetic anisotropy. The depinning time was exponentially proportional to the applied magnetic field, and was well explained by the Neel-Brown formula. The depinning time and threshold magnetic field were varied considerably by injecting current into the nanowire. The spin transfer torque efficiency was estimated to be $(7.2{\pm}0.9){\times}10^{-15}Tm^2$/A from the linear dependence of the threshold current density with respect to the applied magnetic field.

CHARACTERIZATION OF MAGNETIZATION BEHAVIOR IN Co/Pd PERPENDICULAR ANISOTROPIC MULTILAYERS

  • Oh, Hoon-Sang;Joo, Seung-Ki
    • 한국자기학회지
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    • 제5권5호
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    • pp.655-658
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    • 1995
  • Magnetization behavior of sputter-deposited Co/Pd multilayers were characterized, and it has been found that even when the multilayers are sputtered at low pressure (10 mTorr), the coercivity of the multilayers can be increased to large extent without noticeable change of saturation magnetization by increasing the deposition pressure of Pd underlayer. It turned out that the surface topology of Pd underlayer gets rough as deposition pressure increases, which consequently affects the magnetization reversal mode of Co/Pd multilayers from domain wall motion to magnetic spin rotation. The enhancement of coercivity is attributed to the domain wall pinning effect which is comected with the surface roughness of Pd underlayer on which Co/Pd multilayers grow.

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CFD simulation of vortex-induced vibration of free-standing hybrid riser

  • Cao, Yi;Chen, Hamn-Ching
    • Ocean Systems Engineering
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    • 제7권3호
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    • pp.195-223
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    • 2017
  • This paper presents 3D numerical simulations of a Free Standing Hybrid Riser under Vortex Induced Vibration, with prescribed motion on the top to replace the motion of the buoyancy can. The model is calculated using a fully implicit discretization scheme. The flow field around the riser is computed by solving the Navier-Stokes equations numerically. The fluid domain is discretized using the overset grid approach. Grid points in near-wall regions of riser are of high resolution, while far field flow is in relatively coarse grid. Fluid-structure interaction is accomplished by communication between fluid solver and riser motion solver. Simulation is based on previous experimental data. Two cases are studied with different current speeds, where the motion of the buoyancy can is approximated to a 'banana' shape. A fully three-dimensional CFD approach for VIV simulation for a top side moving Riser has been presented. This paper also presents a simulation of a riser connected to a platform under harmonic regular waves.

전기도금법으로 제작한 두께가 다른 CoPt 자성막의 자화역전과 자기역전 부피 (Magnetization Reversal and Magnetic Switching Volume in Electrodeposited CoPt Magnetic Films with Different Thickness)

  • 김현수;정순영;이창형;서수정
    • 한국자기학회지
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    • 제21권6호
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    • pp.193-197
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    • 2011
  • 두께가 다른 CoPt 자성막을 전기도금법으로 제작하여 자화역전 기구와 자기상호작용이 자기역전 부피에 미치는 영향을 연구하였다. 자기모멘트 감쇠의 시간의존성과 잔류자기화 곡선 측정결과로부터 모든 시료의 지배적인 자화역전 기구는 자벽고착에 의한 자벽이동임을 알 수 있었다. 자기점성계수 및 비가역 자화율로부터 구한 자기역전 부피는 시료의 두께 및 인가 자기장의 세기에 거의 무관하게 일정하였으나, 자기역전 부피로부터 구한 역전 직경의 크기는 두께가 두꺼울수록 감소하는 경향을 보였다. 이와 같은 현상은 자벽고착에 의해 제어되는 자벽운동과 쌍극자 상호작용에 의한 것으로 판단된다.

Ag 씨앗층이 SmCo/Cr 박막의 자기적 특성과 미세구조에 미치는 영향 (Effects of Ag Seed Layer on the Magnetic Properties and the Microstructural Evolution of SmCo/Cr Thin Films)

  • 이성래;고광식;김영근
    • 한국자기학회지
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    • 제11권2호
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    • pp.63-71
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    • 2001
  • 유리 기판위에 증착한 Ag 씨앗층이 SmCo/C자막의 미세구조 변화와 자기적 특성에 미치는 영향을 연구하였다. Ag층의 두께가 1nm인 경우 Cr의 거칠기와 입자크기, 그리고 (110)배향성이 감소되어 SmCo/Cr/Ag박막의 보자력 및 각형비가 감소하였다 Ag의 두께가 3 nm인 경우 Ag 씨앗층은 섬형화되어 Cr 하지층의 거칠기가 증가하고 Cr(110)배향성의 증가 그리고 결정립 크기를 감소시켜 보자력이 다시 증가되었다. Ag층의 섬형화에 의한 마이크로 범프효과는 스퍼터 증착분압에 크게 영향을 받았다. 즉 증착 분압이 30 mTorr인 경우 Ag 층의 두께가 3 nm일 때 그 현상이 나타났으나, 5 mTorr에서는 1 nm 두께에서 마이크로 범프 효과가 관측되었다. 두께가 3 nm인 Ag 씨앗층의 도입은 자화반전 거동을 자구벽이동에서 자구회전거동으로 변화시켰으며, 이는 Cr 결정립 크기 감소에 의해 증가된 결정립계가 pinning site로 작용하여 SmCo 자성층의 자구벽이동을 방해하였기 때문이다.

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Passive 3D motion optical data in shaking table tests of a SRG-reinforced masonry wall

  • De Canio, Gerardo;de Felice, Gianmarco;De Santis, Stefano;Giocoli, Alessandro;Mongelli, Marialuisa;Paolacci, Fabrizio;Roselli, Ivan
    • Earthquakes and Structures
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    • 제10권1호
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    • pp.53-71
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    • 2016
  • Unconventional computer vision and image processing techniques offer significant advantages for experimental applications to shaking table testing, as they allow the overcoming of most typical problems of traditional sensors, such as encumbrance, limitations in the number of devices, range restrictions and risk of damage of the instruments in case of specimen failure. In this study, a 3D motion optical system was applied to analyze shake table tests carried out, up to failure, on a natural-scale masonry structure retrofitted with steel reinforced grout (SRG). The system makes use of wireless passive spherical retro-reflecting markers positioned on several points of the specimen, whose spatial displacements are recorded by near-infrared digital cameras. Analyses in the time domain allowed the monitoring of the deformations of the wall and of crack development through a displacement data processing (DDP) procedure implemented ad hoc. Fundamental frequencies and modal shapes were calculated in the frequency domain through an integrated methodology of experimental/operational modal analysis (EMA/OMA) techniques with 3D finite element analysis (FEA). Meaningful information on the structural response (e.g., displacements, damage development, and dynamic properties) were obtained, profitably integrating the results from conventional measurements. Furthermore, the comparison between 3D motion system and traditional instruments (i.e., displacement transducers and accelerometers) permitted a mutual validation of both experimental data and measurement methods.