• 제목/요약/키워드: lorentz effect

검색결과 51건 처리시간 0.021초

Carboxyl Acid Group을 포함한 6FDA-Based 폴리이미드 박막필름의 장시간 에이징에 따른 특성변화 (Effect of Long Time Physical Aging on Ultra Thin 6FDA-Based Polyimide Films Containing Carboxyl Acid Group)

  • 임현구;김주헌;이혁수;김태민
    • 폴리머
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    • 제31권4호
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    • pp.335-342
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    • 2007
  • 장시간에 걸친 에이징이 carboxyl acid group을 포함한 수 백 나노 두께의 6FDA계 폴리이미드 박막에 미치는 영향을 박막의 가스투과도와 굴절률의 변화를 통하여 측정하였다. 에이징 시간에 따른 가스투과도의 변화는 carboxyl acid group을 포함한 박막이 이를 포함하지 않은 박막보다 빠른 투과도 감소와 선택도의 증가를 보였으며, 박막 특성의 정량적 분석을 위해 Lorent-Lorentz 이론을 통하여 volume relaxation을 정량화하였다. 박막의 밀도와 부분자유부피는 에이징 시간의 증가에 따라 지속적인 증가 혹은 감소의 경향을 보였으며, 에이징 시간에 따른 가스투과도와 부분자유부피간의 상관관계를 $P=Ae^{(-B/f)}$을 통하여 예측할 수 있었으며, 그 결과는 다른 고분자 분리막이 보인 경향과 일치하였다.

Poroelastic vibrations of FG Porous higher-order shear deformable

  • Jing Li;Fei Tang;Yasser Alashker;Farhan Alhosny
    • Steel and Composite Structures
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    • 제49권5호
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    • pp.503-516
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    • 2023
  • In the current examination, a trigonometric shear deformation theory is hired to govern natural frequencies of a functionally graded porous microplate which is covered by two nanocomposite layers. The properties of the structure are varied based on the specified patterns. Utilizing the modified form of couple stress theory for taking the scale effect into account in conjunction with Hamilton's principle, the motion equations are obtained. Then, they are solved via Fourier series functions as an analytical approach. After confirming the results' accuracy, various parameters' effect on the results is investigated. Designing and manufacturing more efficient structures, especially those that are subjected to multi-physical loads can be accounted as findings of this work.

전자기 성형 시 온도에 따른 알루미늄 파이프의 전자기-구조 연동해석 (Electromagnetic-structure Co-simulation Analysis of Aluminum Pipe with Electromagnetic Forming according to Temperature)

  • 강한빈;탁승민;백인석;최진규;이석순
    • 항공우주시스템공학회지
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    • 제12권3호
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    • pp.64-69
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    • 2018
  • 고속 전자기 성형 (EMF) 과정은 로렌츠 힘과 자기장의 에너지를 기반으로 한다. EMF의 장점은 향상된 성형성, 주름 감소 및 비접촉 성형 등이 있다. 본 연구에서는 전자기 성형을 통한 알루미늄 파이프의 온도에 따른 성형성을 분석하기 위해 전자기-구조 연동해석을 수행하였으며, 온도가 증가함에 따라 전기저항이 커지므로 인해 자속 밀도는 감소하고, 응력-변형률 곡선에서 온도가 높아질수록 유동 응력이 낮아지므로 변형량은 상대적으로 증가함을 확인할 수 있었다.

Design and simulation of 500 MHz single cell superconducting RF cavity for SILF

  • Yanbing Sun;Wei Ma;Nan Yuan;Yulin Ge;Zhen Yang;Liping Zou;Liang Lu
    • Nuclear Engineering and Technology
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    • 제56권1호
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    • pp.195-206
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    • 2024
  • Shenzhen Innovation Light source Facility (SILF) is a 3.0 GeV fourth generation diffraction limited synchrotron light source currently under construction in Shenzhen. The SILF storage ring is proposed to use two 500 MHz single cell superconducting radio frequency (SRF) cavities to provide 2.4 MV RF voltage. In this study, we examined the geometric structure of mature CESR superconducting cavities and adopted a beam-pipe-type extraction scheme for high-order modes (HOM). One of the objectives of SRF cavity design and optimization in this study is to reduce Ep/Eacc and Bp/Eacc as much as possible to reduce power loss and ensure stable operation of the cavity. To reduce the risk of beam instability and thermal breakdown, the HOM and Multipacting (MP) are simulated. Moreover, the mechanical properties of the cavity are analyzed, including frequency sensitivity from pressure of liquid helium (LHe), stress, tuning, Lorentz force detuning (LFD), the microphone effect, and buckling. By comprehensive design and optimization of 500 MHz single-cell SRF cavities, a superconducting cavity for SILF storage ring was developed. This paper will detailed present the design and simulation.

Optimization of outer core to reduce end effect of annular linear induction electromagnetic pump in prototype Generation-IV sodium-cooled fast reactor

  • Kwak, Jaesik;Kim, Hee Reyoung
    • Nuclear Engineering and Technology
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    • 제52권7호
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    • pp.1380-1385
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    • 2020
  • An annular linear induction electromagnetic pump (ALIP) which has a developed pressure of 0.76 bar and a flow rate of 100 L/min is designed to analysis end effect which is main problem to use ALIP in thermohydraulic system of the prototype generation-IV sodium-cooled fast reactor (PGSFR). Because there is no moving part which is directly in contact with the liquid, such as the impeller of a mechanical pump, an ALIP is one of the best options for transporting sodium, considering the high temperature and reactivity of liquid sodium. For the analysis of an ALIP, some of the most important characteristics are the electromagnetic properties such as the magnetic field, current density, and the Lorentz force. These electromagnetic properties not only affect the performance of an ALIP, but they additionally influence the end effect. The end effect is caused by distortion to the electromagnetic field at both ends of an ALIP, influencing both the flow stability and developed pressure. The electromagnetic field distribution in an ALIP is analyzed in this study by solving Maxwell's equations and using numerical analysis.

아크 플라즈마에 의한 PTFE 노즐 용삭현상 (ABLATION OF PTFE NOZZLE DRIVEN BY ARC PLASMA)

  • 이종철;김윤제
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2005년도 추계 학술대회논문집
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    • pp.311-317
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    • 2005
  • It has been the most progressive interruption technique to use the ablation gas from the surface of PTFE nozzle driven by arc plasma during switching process in $SF_6$ gas circuit breakers. This advanced interruption technique can reduce the required mechanical energy to compress and blow the gas for extinguishing the arc plasma between the electrodes due to using the ablation effect instead. In order to consider the phenomena during calculation of switching process, it is required to confirm the principles of ablation from PTFE nozzle as well as of arc plasma during switching process. In this study, we have calculated the switching process considered the ablation of PTFE nozzle driven by arc plasma using multidisciplinary simulation technique and compared the results with the data without the ablation effect. More $50\%$ difference of pressure rise inside expansion chamber has been found from the results and it should be indispensable for this type of computational work to consider and include the ablation effect of PTFE nozzle. Further study on turbulence and radiation will be followed.

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TIG 용접에서 열유속이 용융효율과 용입형상에 미치는 영향 (Effect of Heat Flux on the Melting Efficiency and Penetration Shape in TIG Welding)

  • 오동수;조상명
    • Journal of Welding and Joining
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    • 제27권2호
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    • pp.44-50
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    • 2009
  • The characteristics of arc pressure, current density and heat flux distribution are important factors in understanding physical arc phenomena, which will have a marked effect on the penetration, size and shape of a weld in TIG welding. The purpose of this study is to find out the effect of the heat flux on the melting efficiency and penetration shape in TIG welding using the results of the previous investigators. The conclusions obtained permit to draw a proper method which derived the heat flux distributions by arc pressure distribution measurements, but previous researchers calculated heat flux and current distribution with the heat intensity measurements by the calorimetry. Heat flux of Ar gas arc was concentrated at the central part and distributed low from the arc axis to the radial direction, that of He mixing arc was lower than that of Ar gas, and it was wide distributed to radial direction. That showed a similar characteristic with the Nestor's by calorimetry calculated values. Throughout heat flux drawn in this study was discussed melting efficiency and penetration shape on Ar gas and He mixing gas arc.

Dynamics of charged particles around a compact star with strong radiation

  • 오재석;김홍수;이형목
    • 천문학회보
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    • 제36권1호
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    • pp.54.2-54.2
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    • 2011
  • It is the conventional wisdom that the Poynting-Robertson effect is essentially the outcome of the interplay between absorption and reemission processes. For a better understanding of the motion of charged particles around a compact star with strong radiation, we reached an alternative interpretation for the Poynting-Robertson effect based on the covariant formalism and found that it is attributed to the combination of the aberration and the Lorentz transformation of the radiation stress-energy tensor. As a general relativistic application of the Poynting-Robertson effect, we studied the dynamics of test particles around the spinning relativistic star with strong radiation. We discovered that the combination of the angular momentum and the finite size of the star generates "radiation counter drag" which exerts on the test particle to enhance its specific angular momentum, contrary to the radiation drag. The balance of the radiation drag and the radiation counter drag renders the particle to hover around the spinning luminous star at the "suspension orbit". The radial position and the angular velocity of the particle on the "suspension orbit" are determined by the angular momentum, the luminosity, and the size of the central star only, and they are independent of the initial position and velocity of the particle.

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Detection of Neuronal Activity by Motion Encoding Gradients: A Snail Ganglia Study

  • Park, Tae-S.;Park, Ji-Ho;Cho, Min-H.;Lee, Soo-Y.
    • 대한의용생체공학회:의공학회지
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    • 제28권1호
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    • pp.24-28
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    • 2007
  • Presuming that firing neurons have motions inside the MRI magnet due to the interaction between the neuronal magnetic field and the main magnetic field, we applied motion encoding gradients to dissected snail ganglia to observe faster responding MRI signal than the BOLD signal. To activate the snail ganglia in synchronization with the MRI pulse sequence, we used electrical stimulation with the frequency of 30 Hz and the pulse width of 2s. To observe the fast responding signal, we used the volume selected MRI sequence. The magnetic resonance signal intensity, measured with 8 ms long motion encoding gradient with a 20mT/m gradient strength, decreased about $3.46{\pm}1.48%$ when the ganglia were activated by the electrical stimulation.

10 MW 급 초전도 풍력발전기용 고온초전도 레이스트렉 코일의 응력 해석 (Stress analysis of HTS racetrack coils for 10 MW class superconducting wind power generator)

  • 김광민;김경훈;박민원;유인근
    • 한국산업정보학회논문지
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    • 제18권2호
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    • pp.13-18
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    • 2013
  • The authors designed a high temperature superconductor (HTS) racetrack coil for a 10 MW class superconducting synchronous wind turbine generator. The designed HTS racetrack coil was analyzed by an electromagnetic finite element method (FEM) to determine the magnetic field distribution, inductance, stress, etc. This paper describes the stress analysis and structure design result of the HTS racetrack coil for 10 MW class superconducting synchronous wind turbine generators, considering orthotropic material properties, a large magnetic field, and the resulting Lorentz force effect. Insulated HTS racetrack coils and no-insulation HTS racetrack coils were also considered. According to the results of the stress analysis, the no-insulation HTS racetrack coil results were better than the insulated HTS racetrack coil results.