• Title/Summary/Keyword: 포화물성

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Topology Optimization of Perpendicular Magnetic Recording System by Considering Magnetic Nonlinearity (재료의 비선형을 고려한 수직기록장치의 위상최적화)

  • Park, Soon-Ok;Yoo, Jeong-Hoon;Min, Seung-Jae
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.34 no.7
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    • pp.821-827
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    • 2010
  • This paper proposes a density method based topology optimization of a perpendicular magnetic recording system design in which the saturation effect is taken into account. During the topology optimization process in magnetic fields, the magnetic reluctivity is updated in accordance with the changes in element density determined by a sensitivity analysis. The magnetic reluctivity is determined from a B-H curve and is used to represent nonlinear material property, i.e., the saturation effect. The sensitivity for a generalized response functional is formulated using the adjoint variable method in which the nonlinear property is taken into account and the objective function is set such that the magnetic energy in the media is maximized. Effects due to the nonlinear property can be observed from a numerical study in which the linear and the nonlinear topology optimization results are compared.

Low Temperature Growth of Silicon Oxide Thin Film by In-direct Contacting Process with Photocatalytic TiO2 Layer on Fused Silica (광촉매 TiO2 층의 비접촉식 공정을 통한 저온 실리콘 산화박막 성장)

  • Ko, Cheon Kwang;Lee, Won Gyu
    • Applied Chemistry for Engineering
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    • v.19 no.2
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    • pp.236-241
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    • 2008
  • The possibility of silicon oxidation through the aerial-diffusion of active oxygen species has been evaluated. The species originate from the surface of $TiO_2$ exposed by UV. Among process parameters such as UV intensity, substrate temperature and chamber pressure with oxygen, UV intensity was a major parameter to the influence on the oxide growth rate. When 1 kW high pressure Hg lamp was used as a UV source, the growth rate of silicon oxide was 8 times as faster as that of a 60 W BLB lamp. However, as the chamber pressure increased, the growth rate was declined due to the suppression of aerial diffusion of active oxygen species. According to the results, it could be confirmed that the aerial-diffusion of active oxygen species from UV-irradiated photocatalytic surface can be applied to a new method for preparing an ultra-thin silicon oxide at the range of relatively low temperature.

The Fabrication and Reproducing Signal Characteristics of Tri-layered Magnetoresistance Element (3층 자기저항소자의 제작 및 재생신호특성)

  • 김용성;노재철;박현순;서수정;김기출;송용진
    • Journal of the Korean Magnetics Society
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    • v.8 no.4
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    • pp.231-240
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    • 1998
  • We investigated that the fabrication and reproducing signal characteristics of tri-layered magnetoresistance (MR) element for the high density magnetic thin film heads and sensors. Magnetoresistance curve of tri-layered MR element predicted by computer modeling was saturated above external field of -15 Oe~+22 Oe, and it was shifted to linearized region as large as 4 Oe. In the case of fabricated real device, magnetoresistance curve was saturated above external field of $\pm$15 Oe, and it was shifted to linearized region as large as 4 Oe. As shown in real device, MR response curve was in good agreement with the simulation results. As a result of experimental data of reproducing output signal in real device, it retained normal sinusoidal waveforms in 1~4 Oe external magnetic field. In this magnetic field region, the fabricated heads with tri-layered MR element can be operated with good reproduced characteristics. This will be beneficial to the use of efficient processes of manufacturing elements and the vacuum deposition techniques which control thin film properties.

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Mechanical Characteristics of Basalt in Jeju Island with Relation to Moisture Condition (함수상태에 따른 제주도 현무암의 역학적 특성)

  • Park, Sangyeol;Moon, Kyoungtae
    • Journal of the Korean Geotechnical Society
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    • v.36 no.7
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    • pp.29-40
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    • 2020
  • In this study, various laboratory tests were conducted to evaluate the effect of the moisture conditions of Jeju basalt on the mechanical properties. Twenty specimens were produced respectively from basalts collected from Sangga-ri and Eoeum-ri in northwestern Jeju. The tests were performed under saturated and dry conditions, and the results of these tests were used to examine the relationship with the physical properties and the mechanical properties depending on the moisture conditions. As a result of analysis with the test results and references, it was found that the uniaxial compressive strength, Brazilian tensile strength and elastic modulus in the saturated condition decrease at a similar ratio as compared with the dry condition. Also, the Brazilian tensile strength and the uniaxial compressive strength were in a linear proportional relationship, and in the moisture conditions, this relationship was not significantly affected.

Physical Property Factors Controlling the Electrical Resistivity of Subsurface (지반의 전기비저항을 좌우하는 물성요인)

  • Park Sam-Gyu
    • Geophysics and Geophysical Exploration
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    • v.7 no.2
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    • pp.130-135
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    • 2004
  • This paper describes the physical properties of the factors controlling the electrical resistivity of the subsurface. Resistivities of various types of soil and rock samples saturated with sodium chloride solutions having nine different concentrations were measured, and the measured resistivities of these samples were compared with calculated resistivities obtained using the conventional empirical formulas. From the results obtained, we observed that the resistivity of the soil and rock samples increases with increasing in pore-fluids resistivity regardless of the media type. However, between 20 and 200 ohm-m, which is the normal range of resistivity of groundwater, the resistivity of the pore-fluids have little or no effect on the resistivities of the samples used. Below 10 ohm-m, the resistivities of the samples are mainly controlled by the pore-fluids, whereas, in the normal range of resistivity of groundwater, the sample resistivities are controlled by their intrinsic matrix resistivity more than by the pore-fluids resistivity. Also, the measured resistivity of rock and soil samples having more than $20\%$ clay contents showed a good agreement with the calculated resistivity using the parallel resistance model whereas, the calculated resistivities of glass beads correlate with that obtained using Archie's formula. When the pore-fluid resistivity is high, the computation of the resistivity values of the samples using the Archie's formula could not be carried out. Through this study, we were able to confirm that the tests are only applicable to the parallel resistance model considering the intrinsic matrix resistivity within the normal resistivity range of groundwater in the subsurface.

Delamination Prediction of Semiconductor Packages through Finite Element Analysis Reflecting Moisture Absorption and Desorption according to the Temperature and Relative Humidity (유한요소 해석을 통해 온도와 상대습도에 따른 수분 흡습 및 탈습을 반영한 반도체 패키지 구조의 박리 예측)

  • Um, Hui-Jin;Hwang, Yeon-Taek;Kim, Hak-sung
    • Journal of the Microelectronics and Packaging Society
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    • v.29 no.3
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    • pp.37-42
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    • 2022
  • Recently, the semiconductor package structures are becoming thinner and more complex. As the thickness decrease, interfacial delamination due to material mismatch can be further maximized, so the reliability of interface is a critical issue in industry field. Especially, the polymers, which are widely used in semiconductor packaging, are significantly affected by the temperature and moisture. Therefore, in this study, the delamination prediction at the interface of package structure was performed through finite element analysis considering the moisture absorption and desorption under the various temperature conditions. The material properties such as diffusivity and saturated moisture content were obtained from moisture absorption test. The hygro-swelling coefficients of each material were analyzed through TMA and TGA after the moisture absorption. The micro-shear test was conducted to evaluate the adhesion strength of each interface at various temperatures considering the moisture effect. The finite element analysis of interfacial delamination was performed that considers both deformation due to temperature and moisture absorption. Consequently, the interfacial delamination was successfully predicted in consideration of the in-situ moisture desorption and temperature behavior during the reflow process.

Analysis of the integral fuel tank considering hygrothermal enviornmental factors (열습도 환경요소를 고려한 일체형 복합재 연료탱크의 해석)

  • Moon, Jin-Bum;Kim, Soo-Hyun;Kim, Chun-Gon
    • Composites Research
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    • v.20 no.5
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    • pp.64-69
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    • 2007
  • Matrix dominant properties of composites are largely degraded under harmful environments such as temperature and humidity. Therefore we should consider the harmful environmental factors in the design of an UAV integral fuel tank subjected to high temperature and high humidity. The harmful environment experiment was performed for carbon/epoxy composites made of a unidirectional prepreg USN175B, and a plain woven fabric prepreg WSN3. The immersion experiment was performed under $90^{\circ}C$. The specimens were tested when the weight gam of specimen was saturated. The specimens were tested under $74^{\circ}C$ to obtain tensile and inplane shear properties. The results showed that the matrix dominant properties were extremely degraded by hygrothermal environment. To consider the variability of load, the anti-optimization method was applied. By using this method, the worst load case was found by comparing the load convex model and stability boundary. The stability boundary was obtained by analysis of the integral wing fuel tank of UAV using degraded properties. To do this, it was known that the worst load case of the integral wing fuel tank was the hovering mode load case.

UBM 스퍼터링법으로 코팅한 벌크비정질합금(BMG) 박막의 특성 연구

  • Park, Hye-Seon;Yang, Ji-Hun;Jeong, Jae-Hun;Song, Min-A;Jeong, Jae-In;Sin, Seung-Yong;Mun, Gyeong-Il
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.335-335
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    • 2013
  • 최근 다기능 소재의 개발이 필요함에 따라 서로 상반되는 2가지 이상의 물성을 동시에 구현할 수 있는 소재의 개발이 요구되고 있다. 4 성분계 물질을 단일 타겟으로 제조함으로써 다수의 타겟을 이용하는 기존 PVD 방법의 복잡성과 재형성 등의 문제점을 해결하고 다기능성을 구현할 수 있는 코팅막을 제조할 수 있게 된다. 본 연구에서는 제조된 4 성분계 모물질을 UBM 최근 다기능 소재의 개발이 필요함에 따라 서로 상반되는 2가지 이상의 물성을 동시에 구현할 수 있는 소재의 개발이 요구되고 있다. 4 성분계 물질을 단일 타겟으로 제조함으로써 다수의 타겟을 이용하는 기존 PVD 방법의 복잡성과 재형성 등의 문제점을 해결하고 다기능성을 구현 할 수 있는 코팅막을 제조할 수 있게 된다. 본 연구에서는 제조된 4 성분계 모물질을 UBM 스퍼터링법을 이용하여 질화 공정을 도출하였고 질소 함량에 따른 물리적 특성 및 박막의 특성에 대해 연구하였다. BMG (Bulk Metallic Glass) 타겟을 이용하여 마그네트론 스퍼터링법으로 박막을 코팅하였다. 시편은 Si wafer, SUS 그리고 부식 특성 평가를 실시하기 위하여 냉연강판을 사용하였다. 시편은 아세톤, 알코올로 각각 10분간 초음파 세척한 후 진공장비에 장착하여 Ar 분위기에서 글로우 방전으로 청정을 30분간 실시하였다. 시편청정이 끝나면 ~$10^{-6}$ Torr까지 진공 배기를 실시하고 Ar 가스를 주입하여 2.5 mTorr로 진공도를 유지하여 스퍼터링으로 박막 코팅을 실시하였다. 스퍼터링 파워는 약 0.6 kW (2.0 A)으로 고정하였고 질소 유량은 0~10 SCCM으로 변화시켜 BMG 박막을 코팅하였다. 질소가 첨가된 BMG 박막에서는 시편의 색상이 노란빛으로 나타났으며 이것은 타겟의 조성 중 가장 많이 함유되어있는 Zr이 질화되어 색상의 변화가 일어난 것으로 판단된다. BMG 코팅을 위해서 진공용기로 주입한 질소의 유량이 소량인 경우에도 BMG 코팅층에 비교적 많은 양의 질소가 존재하였고 일정량 이상에서는 BMG 코팅층에 존재하는 질소의 양이 포화되는 현상을 보였다. 질소 유량 3, 4 SCCM의 BMG 코팅층에서 ZrN (111), ZrN (200) Peak이 관찰되었다. BMG 코팅층의 경도 측정결과 Bias 50 V 인가 시 ~22 Gpa로 경도가 가장 높았다. BMG 코팅층의 내부식 특성을 평가하기 위해 염수분무 시험을 실시하였고 ~$10{\mu}m$의 두께를 갖는 BMG 코팅층에서 염수분무 시작 후 48시간 만에 적청이 발생하였다.

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Evolution of Magnetic Property in Ultra Thin NiFe Films (나노두께 퍼말로이에서의 계면효과에 의한 자기적 물성 변화)

  • Jung, Young-soon;Song, Oh-sung
    • Journal of the Korean Magnetics Society
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    • v.14 no.5
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    • pp.163-168
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    • 2004
  • We prepared ultra thin film structure of Si(100)/ $SiO_2$(200 nm)/Ta(5 nm)/Ni$_{80}$Fe$_{20/(l~15 nm)}$Ta(5 nm) using an inductively coupled plasma(ICP) helicon sputter. Magnetic properties and cross-sectional microstructures were investigated with a superconduction quantum interference device(SQUID) and a transmission electron microscope(TEM), respectively. We report that NiFe films of sub-3 nm thickness show the B$_{bulk}$ = 0 and B$_{surf}$=-3 ${\times}$ 10$^{-7}$(J/$m^2$). Moreover, Curie temperature may be lowered by decreasing thickness. Coercivity become larger as temperature decreased with 0.5 nm - thick Ta/NiFe interface intermixing. Our result implies that effective magnetic properties of magnetoelastic anisotropy, saturation magnetization, and coercivity may change abruptly in nano-thick films. Thus we should consider those abrupt changes in designing nano-devices such as MRAM applications.

Effect of Operating Parameters on the Physical Properties of Activated Carbon Manufactured with Bead-Type Polymer Resin (구형 고분자수지로 활성탄제조 시 운전인자의 영향)

  • Lee, Gangchoon;Yoon, Taekyung;Shon, Zangho
    • Clean Technology
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    • v.19 no.3
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    • pp.279-286
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    • 2013
  • Using a cation exchange resin of polystyrene-DVB copolymer as a carbon source for the production of activated carbon, the effects of operating parameters on the physical properties of activated carbon such as specific surface area and specific pore volume were experimentally studied. In carbonization process specific surface area and specific pore volume of carbonized product decreased with the increase of carbonization temperature and time. They were proportional to activation temperature and time up to the specific temperature and time in activation process. In carbonization process the increase of heating rate gave negative effect to the properties. The properties of activated product, on the contrary, increased with the heating rate in carbonization process. The properties of activated carbon manufactured with the resin exchanged with divalent cations were lower than those with raw resin.