• 제목/요약/키워드: non-magnetic layer

검색결과 74건 처리시간 0.019초

Endodermal Cyst of the Posterior Fossa

  • Lee, Chul-Woo;Yoon, Seok-Mann;Kim, Yoon-Jung;Yun, Il-Gyu
    • Journal of Korean Neurosurgical Society
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    • 제37권4호
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    • pp.310-312
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    • 2005
  • We report a case of endodermal cyst of the posterior fossa. A 44-year-old man presented with headache for three months. Computed tomography and magnetic resonance imaging revealed a $6{\times}2.5{\times}2cm$ sized extra-axial non-enhancing cystic lesion on the ventral aspect to brain stem. To avoid retraction injury to brain stem, far lateral transcondylar approach was selected. Right suboccipital craniotomy and partial removal of occipital condyle with resection of C-1 and C-2 hemilaminae exposed the extra-axial cyst well. The cyst has a whitish thick membrane. It was not adherent to brain stem and lower cranial nerves. Total removal of the cyst was done without difficulty. Histological analysis disclosed a layer of pseudostratified columnar epithelium with basement membrane. The result of immunohistochemical study was consistent with endodermal cyst.

전기분해를 이용한 난삭재의 다이아몬드 미세가공 (Diamond micro-cutting of the difficult -to -cut materials using Electrolysis)

  • 손성민;손민기;임한석;안중환
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 추계학술대회 논문집
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    • pp.951-954
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    • 2000
  • This paper presents a new cutting method, i.e. diamond cutting, aided by electrolysis, in order to cut ferrous materials with diamond tools. Diamond cutting is widely applied in manufacturing ultraprecision parts such as magnetic disk, polygon mirror, spherical/non-spherical mirror and copier drum, etc. because of the diamond tool edge sharpness. In general, however, diamond cutting cannot be applied to cutting steels, because diamond tools wear excessively in cutting iron based materials like steel due to their high chemical interaction with iron in high temperature. In order to suppress the diffusion of carbon from the diamond tool and to reduce increase of cutting force due to size effect, we attempt to change chemically the compositions of iron based materials using electrolysis in a limited part which will be soon cut. Through experiments under several micro-machining and electrolysis conditions, cutting using electrolysis, compared to conventional cutting, was found to result in a great decrease of the cutting force, a better surface and much less wear tool.

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Modeling of fractional magneto-thermoelasticity for a perfect conducting materials

  • Ezzat, M.A.;El-Bary, A.A.
    • Smart Structures and Systems
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    • 제18권4호
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    • pp.707-731
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    • 2016
  • A unified mathematical model of the equations of generalized magneto-thermoelasticty based on fractional derivative heat transfer for isotropic perfect conducting media is given. Some essential theorems on the linear coupled and generalized theories of thermoelasticity e.g., the Lord- Shulman (LS) theory, Green-Lindsay (GL) theory and the coupled theory (CTE) as well as dual-phase-lag (DPL) heat conduction law are established. Laplace transform techniques are used. The method of the matrix exponential which constitutes the basis of the state-space approach of modern theory is applied to the non-dimensional equations. The resulting formulation is applied to a variety of one-dimensional problems. The solutions to a thermal shock problem and to a problem of a layer media are obtained in the present of a transverse uniform magnetic field. According to the numerical results and its graphs, conclusion about the new model has been constructed. The effects of the fractional derivative parameter on thermoelastic fields for different theories are discussed.

Frequency characteristics of a multiferroic Piezoelectric/LEMV/CFRP/Piezomagnetic composite hollow cylinder under the influence of rotation and hydrostatic stress

  • Selvamani, R.;Mahesh, S.;Ebrahimi, F.
    • Coupled systems mechanics
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    • 제10권2호
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    • pp.185-198
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    • 2021
  • An analytical model is consider to scrutinize axisymmetric wave propagation in multiferroic hollow cylinder with rotating and initial stressed forces, where a piezomagnetic (PM) material layer is bonded to a piezoelectric (PE) cylinder together by Linear elastic materials with voids. Both distinct material combos are taken into account. Three displacement potential functions are introduced to uncouple the equations of motion, electric and magnetic induction. The numerical calculations are carried out for the non-dimensional frequency by fixing wave number and thickness. The arrived outputs are plotted as the dispersion curves for different layers. The results obtained in this paper can offer significance to the application of PE/PM composite hollow cylinder via LEMV and CFRP layers for the acoustic wave and microwave technologies.

Nonlocal dynamic modeling of mass sensors consisting of graphene sheets based on strain gradient theory

  • Mehrez, Sadok;Karati, Saeed Ali;DolatAbadi, Parnia Taheri;Shah, S.N.R.;Azam, Sikander;Khorami, Majid;Assilzadeh, Hamid
    • Advances in nano research
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    • 제9권4호
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    • pp.221-235
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    • 2020
  • The following composition establishes a nonlocal strain gradient plate model that is essentially related to mass sensors laying on Winkler-Pasternak medium for the vibrational analysis from graphene sheets. To achieve a seemingly accurate study of graphene sheets, the posited theorem actually accommodates two parameters of scale in relation to the gradient of the strain as well as non-local results. Model graphene sheets are known to have double variant shear deformation plate theory without factors from shear correction. By using the principle of Hamilton, to acquire the governing equations of a non-local strain gradient graphene layer on an elastic substrate, Galerkin's method is therefore used to explicate the equations that govern various partition conditions. The influence of diverse factors like the magnetic field as well as the elastic foundation on graphene sheet's vibration characteristics, the number of nanoparticles, nonlocal parameter, nanoparticle mass as well as the length scale parameter had been evaluated.

Hawaii 동남부 심해저 분지에 대한 지구물리학적 연구 : 중력, 자력 및 탄성파 탐사 (A Geophysical Study of a Deep sea basin southeast of the Hawaiian Island: Gravity, Magnetic, and Seismic Profiling)

  • 서만철;박찬홍
    • 한국해양학회지
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    • 제26권1호
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    • pp.1-12
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    • 1991
  • 적도 북동 태평양 클래리언-클리퍼톤 변환단층대 사이의 망간탐사 구역에 대하여 중력, 자력 및 탄성파탐사를 포함한 종합적인 지구물리탐사가 수행되었다. 해저면에 발달된 해저산이나 동서방향의 해저구릉들은 최고 20 mgal의 양의 Free-air 중력 이 상을 보여준다. 해산부근에서의 음의 Bouguer 및 Residual 중력이상치는 해산하부에 주위의 해양지각보다 낮은 밀도의 암석이 존재함을 시사한다. 자력이상대가 발견되지 않는 사실과 동서방향의 극성변화없는 미약한 자력이상치는 본 조사지역이 백악기말의 Magnetic Quiet Zone에 속함을 의미하며 또 남쪽 조사구역의 동서방향으로 100 km 이 상 떨어진 해산들에서 공통적으로 발견되는 양의 자기이상치는 이들 해산들이 발견되 지 않은 단층대를 따라 좌향이동 되었을 가능성을 보여준다. 조사구역내의 퇴적암층은 태평양 분지내 다른 지역과 동일한 탄성과 반사특성을 보이며 세 층으로 나누어 진다. 퇴적암층은 약 200-400 m의 두께를 보이며, 해산 등의 험한 해저지형을 갖는 남쪽이 평탄한 북쪽보다 두꺼운 퇴적층을 보인다. 망간단괴들은 남쪽지역의 해산이 발달되고 Unit I의 두께가 100 m 이상되는 지역에 가장 많이 분포한다.

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The fabrication of bulk magnet stacked with HTS tapes for the magnetic levitation

  • Park, Insung;Kim, Gwantae;Kim, Kyeongdeok;Sim, Kideok;Ha, Hongsoo
    • 한국초전도ㆍ저온공학회논문지
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    • 제24권3호
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    • pp.47-51
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    • 2022
  • With the innovative development of bio, pharmaceutical, and semiconductor technologies, it is essential to demand a next-generation transfer system that minimizes dust and vibrations generated during the manufacturing process. In order to develop dust-free and non-contact transfer systems, the high temperature superconductor (HTS) bulks have been applied as a magnet for levitation. However, sintered HTS bulk magnets are limited in their applications due to their relatively low critical current density (Jc) of several kA/cm2 and low mechanical properties as a ceramic material. In addition, during cooling to cryogenic temperatures repeatedly, cracks and damage may occur by thermal shock. On the other hand, the bulk magnets made by stacked HTS tapes have various advantages, such as relatively high mechanical properties by alternate stacking of the metal and ceramic layer, high magnetic levitation performance by using coated conductors with high Jc of several MA/cm2, consistent superconducting properties, miniaturization, light-weight, etc. In this study, we tried to fabricate HTS tapes stacked bulk magnets with 60 mm × 60 mm area and various numbers of HTS tape stacked layers for magnetic levitation. In order to examine the levitation forces of bulk magnets stacked with HTS tapes from 1 to 16 layers, specialized force measurement apparatus was made and adapted to measure the levitation force. By increasing the number of HTS tapes stacked layers, the levitation force of bulk magnet become larger. 16 HTS tapes stacked bulk magnets show promising levitation force of about 23.5 N, 6.538 kPa at 10 mm of levitated distance from NdFeB permanent magnet.

가스터빈의 코팅층 건정성 평가를 위한 적외선 열화상 카메라 기법 활용 (IR Camera Technique Application for Evaluation of Gas Turbine Blades Covering Integrity)

  • 김재열;양동조;최철준;박상기;안연식;정계조
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.192-196
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    • 2005
  • Key part of main equipment in a gas turbine may be likely to be damaged due to operation under high temperature, high pressure, high-speed rotation, etc. Accordingly, the cost for maintenance increases and the damaged parts may cause generation to stop. The number of parts for maintenance also increases, but diagnostics technology fur the maintenance actually does not catch up with the demand. Blades are made of precipitation hardening Ni superalloy IN738 and the like for keeping hot strength. The surface of a blade is thermal-sprayed, using powder with main compositions such as Ni, Cr, Al, etc. in order to inhibit hot oxidation. Conventional regular maintenance of the coating layer of a blade is made by FPI (Fluorescent Penetrant Inspection) and MTP (Magnetic Particle Testing). Such methods, however, are complicated and take long time and also require much cost. In this study, defect diagnostics were tested for the coating layer of an industrial gas turbine blade, using an infraredthermography camera. Since the infrared thermography method can check a temperature distribution on a wide range of area by means of non-contact, it can advantageously save expenses and time as compared to conventional test methods. For the infrared thermography method, however, thermo-load must be applied onto a tested specimen and it is difficult to quantify the measured data. To solve the problems, this essay includes description about producing a specimen of a gas turbine blade (bucket), applying thermo-load onto the produced specimen, photographing thermography images by an infrared thermography camera, analyzing the thermography images, and pre-testing for analyzing defects on the coating layer of the gas turbine blade.

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버퍼층 Ta에 의존하는 코네틱 박막의 연자성 자기저항 특성 (Soft Magnetoresistive Properties of Conetic Thin Film Depending on Ta Buffer Layer)

  • 최종구;황도근;이상석;최진협;이기암;이장로
    • 한국자기학회지
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    • 제19권6호
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    • pp.197-202
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    • 2009
  • 코닝유리(Corning glass) 기판 위에 이온빔 증착법으로 제작한 버퍼(Ta)/코네틱(Conetic; NiFeCuMo) 박막에 대해 버퍼층에 의존하는 결정성장과 열처리 효과를 조사하였다. 또한 코네틱층을 증착할 때에 인가한 자기장 방향으로 용이축과 곤란축의 자기저항 곡선으로부터 얻은 보자력과 포화자기장값을 버퍼층 유무에 따라 서로 비교하였다. Ta 박막의 두께가 5 nm이고 코네틱 박막의 두께가 50 nm일 때에 보자력은 0.12 Oe으로 작았으며, MH 히스테리시스 곡선에서 얻은 자화율($\chi$)은 1.2 ${\times}\;10^4$으로 우수한 연자성의 특성을 가졌다. 저자기장에 민감한 거대자기저항 스핀밸브(GMR-SV; giant magneoresistance-spin valve)나 자기터널링접합(MTJ; megnetic tunnel junction) 박막구조에서 자유층으로 연자성의 특성이 우수한 코네틱 박막을 사용할 수 있는 가능성을 확인하였다.

Non-monotonic Size Dependence of Electron Mobility in Indium Oxide Nanocrystals Thin Film Transistor

  • Pham, Hien Thu;Jeong, Hyun-Dam
    • Bulletin of the Korean Chemical Society
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    • 제35권8호
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    • pp.2505-2511
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    • 2014
  • Indium oxide nanocrystals ($In_2O_3$ NCs) with sizes of 5.5 nm-10 nm were synthesized by hot injection of the mixture precursors, indium acetate and oleic acid, into alcohol solution (1-octadecanol and 1-octadecence mixture). Field emission transmission electron microscopy (FE-TEM), High resolution X-Ray diffraction (X-ray), Nuclear magnetic resonance (NMR), and Fourier transform infrared spectroscopy (FT-IR) were employed to investigate the size, surface molecular structure, and crystallinity of the synthesized $In_2O_3$ NCs. When covered by oleic acid as a capping group, the $In_2O_3$ NCs had a high crystallinity with a cubic structure, demonstrating a narrow size distribution. A high mobility of $2.51cm^2/V{\cdot}s$ and an on/off current ratio of about $1.0{\times}10^3$ were observed with an $In_2O_3$ NCs thin film transistor (TFT) device, where the channel layer of $In_2O_3$ NCs thin films were formed by a solution process of spin coating, cured at a relatively low temperature, $350^{\circ}C$. A size-dependent, non-monotonic trend on electron mobility was distinctly observed: the electron mobility increased from $0.43cm^2/V{\cdot}s$ for NCs with a 5.5 nm diameter to $2.51cm^2/V{\cdot}s$ for NCs with a diameter of 7.1 nm, and then decreased for NCs larger than 7.1 nm. This phenomenon is clearly explained by the combination of a smaller number of hops, a decrease in charging energy, and a decrease in electronic coupling with the increasing NC size, where the crossover diameter is estimated to be 7.1 nm. The decrease in electronic coupling proved to be the decisive factor giving rise to the decrease in the mobility associated with increasing size in the larger NCs above the crossover diameter.