• 제목/요약/키워드: minimum film thickness

검색결과 187건 처리시간 0.019초

쉘 모델을 이용한 공기 포일 스러스트 베어링의 열-유체-구조 연동 해석 (Thermo-Fluid-Structure Coupled Analysis of Air Foil Thrust Bearings using Shell Model)

  • 윤종완;문소연;박상신
    • Tribology and Lubricants
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    • 제40권1호
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    • pp.17-23
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    • 2024
  • This study analyzes the thermal effects on the performance of an air foil thrust bearing (AFTB) using COMSOL Multiphysics to approximate actual bearing behavior under real conditions. An AFTB is a sliding-thrust bearing that uses air as a lubricant to support the axial load. The AFTB consists of top and bump foils and supports the rotating disk through the hydrodynamic pressure generated by the wedge effect from the inclined surface of the top foil and the elastic deformation of the bump foils, similar to a spring. The use of air as a lubricant has some advantages such as low friction loss and less heat generation, enabling air bearings to be widely used in high-speed rotating systems. However, even in AFTB, the effects of energy loss due to viscosity at high speeds, interface frictional heat, and thermal deformation of the foil caused by temperature increase cannot be ignored. Foil deformation derived from the thermal effect influences the minimum decay in film thickness and enhances the film pressure. For these reasons, performance analyses of isothermal AFTBs have shown few discrepancies with real bearing behavior. To account for this phenomenon, a thermal-fluid-structure analysis is conducted to describe the combined mechanics. Results show that the load capacity under the thermal effect is slightly higher than that obtained from isothermal analysis. In addition, the push and pull effects on the top foil and bump foil-free edges can be simulated. The differences between the isothermal and thermal behaviors are discussed.

RF Diode 스퍼터 방법으로 증착된 FeN 다층 박막의 자기적 특성 (Magnetic Properties of RF Diode Sputtered FeN Multilayer Films)

  • 최연봉;박세익;조순철
    • 한국자기학회지
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    • 제5권1호
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    • pp.42-47
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    • 1995
  • 자기 유도 헤드용 FeN 박막을 RF diode reactive 스퍼터 방법으로 Corning 7059 유리 기판 위에 증착하여 그 자기적 특성을 측정하였다. FeN 박막의 자기적 특성은 박막 두께, 가스 압력, 스퍼터 파워, $N_{2}$와 Ar의 유량비에 큰 영향을 받았다. 스퍼터 파워 800 W, 가스 압력 3 mT, 질소와 아르곤의 유량비 6.6 : 100, 단층 박막의 두께를 $1,000\;{\AA}$에서 $6,000\;{\AA}$으로 변화시키며 보자력의 변화를 측정 하였다. 두께가 $30\;{\AA}$$SiO_{2}$ 층을 사이층으로 하여 전체 박막 두께를 $6,000\;{\AA}$으로 고정하고 7층까지 증착한 시편의 보자력과 포화 자화값을 측정하였다. 단층 박막 두께에 따른 자화용이 방향의 보자력은 두께가 증가할수록 감소하였으며 $3,000\;{\AA}$ 이상에서는 거의 변화가 없었다. FeN 다층 박막의 경우 층수가 증가함에 따라 보자력은 감소하였다. X 선 회절 선폭으로 부터 결정립의 크기를 계산한 결과 층수가 증가할수록 결정립의 크기가 $200\;{\AA}$에서 $120\;{\AA}$으로 점차 감소하였다. 최소 보자 력은 4층 박막에서 자화 곤란 방향으로 0.4 Oe을 얻었다. 투자율 측정 결과 최대 상대 투자율은 2,900이었으며, 이들 박막의 차단 주파수는 100 MHz 이상이었다.

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CEM BIO Film 피복시설의 환경특성과 풋고추 생육 (Greenhouse Environment and Growth of Green Pepper (Capsicum annuum L.) in Greenhouse Covered with CEM BIO Film)

  • 전희;김경제;권영삼;김현환;이시영
    • 생물환경조절학회지
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    • 제9권3호
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    • pp.161-165
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    • 2000
  • CEM BIO P.E.필름으로 피복된 시설에서 300~1,100nm 사이의 분광투과율은 일반 P.E. 필름으로 피복된 시설보다 높았다. 전반적으로 시설내 광투과율은 이중피복, 골조, 기타시설물 때문에 노지에 비하여 절반 수준을 나타냈다. 순복사량은 CEM BIO P.E. 필름 피복시설이 5,424.5W.m$^{-2}$ 로서 일반 P.E.필름 피복시설보다 2.9% 낮았고, 광합성유효복사 투과율은 CEM BIO P.E.필름 피복시설이 3,861.2W.n$^{-2}$ 로서 일반 P.E. 필름 피복시설보다 3.8% 높았으며, 무가온기의 적산최저온도는 CEM BIO P.E. 필름 피복시설이 일반 P.E. 필름 피복시설보다 1일 평균 0.35$^{\circ}C$ 높았다. 정식후 30일의 풋고추 생육은 CEM BIO P.E. 필름 피복시설에서 초장, 경경, 엽면적, 생체중, 건물중 및 군락생산구조가 우수하였고, 과실은 과중이 11.28g으로 일반 P.E. 필름 피복시설 보다 1.25g 무거웠으며, 상품율은 2.7% 높았다. 1997년 11월 19일부터 1998년 3월 3일 사이의 수량은 CEM BIO P.E. 필름피복시설에서 7.4% 많았으나 전체적인 수량은 차이를 보이지 않았다.

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The Critical Pigment Volume Concentration Concept for Paper Coatings: I. Model Coating Systems Using Plastic Pigments and Latex Binders for Paper Coating Applications

  • Lee, Do-Ik
    • 펄프종이기술
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    • 제34권5호
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    • pp.1-17
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    • 2002
  • The immobilization and consolidation of the model coatings based on the plastic pigment and latex binder of known particle sizes were theoretically Studied in terms of the dense random packing of binary spheres and varying extent of latex film shrinkage. The porosity of the model coatings was calculated based on three proposed latex shrinkage models: Maximum, Minimum, and Linearly Decreasing Latex Shrinkage. The increasing extent of latex shrinkage was calculated up to the critical pigment volume concentration(CPVC) as a function of plastic pigment volume fractions, and the maximum latex shrinkage was estimated from the CPVC. Also, the number of pores and the average equivalent spherical pore diameters were calculated based on those proposed models. The opacity and gloss of the model coatings on polyester films were measured and their porosity was also determined by a simple coat weight-thickness method. As expected, various coating structure-property-composition relationships, such as opacity, gloss, porosity, etc., were shown to exhibit sharp transitions near the CPVC. The CPVC values determined by the opacity, gloss, and porosity vs. PVC relationships, respectively, agreed very well with each other. Especially, the CPVC's determined by the opacity and porosity vs. PVC curves were identical. The comparison between the theoretically calculated and experimental porosity values showed that the intermediate value between the maximum and minimum latex shrinkage would best fit the experimental porosity data. The effect of plastic pigment particle size on the optical properties and porosity of model coatings was also studied and it was observed that the coating opacity and porosity increased with increasing plastic pigment particle size, but the gloss decreased. The ink gloss of the uncalendered model coatings applied onto commercial sheet offset coated papers was shown to be affected by both the coating gloss and porosity: the higher the coating gloss, the higher the ink gloss, but the higher the coating porosity, the lower the ink gloss. Their printability was also studied in terms of the number of passes-to-fail and the rate of ink setting as a function of both plastic pigment volume fractions and plastic pigment particle sizes. A minimum crack-free temperature(MCR) of latex-bound coatings was proposed to better predict the behaviors of latexes as coating binders. The wet state of model coating dispersions, the surfaces of consolidated model coatings, and their internal structure were examined by both electron and atomic force microscopy, and their micrographs were found to be consistent with our immobilization and consolidation models.

포장방법에 따른 팽이버섯의 선도유지 효과 (Effect of Packaging Methods on Enoki Mushroom Qualities)

  • 신세희;정주연;최정희;김동만;정문철
    • 한국식품저장유통학회지
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    • 제16권2호
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    • pp.179-185
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    • 2009
  • 팽이버섯의 선도유지를 위한 적정 포장방법을 구명하기 위하여 팽이버섯의 호흡특성과 필름두께에 따른 기체조성을 사전 조사한 다음 현행 포장방법인 일반필름포장(PM)과 진공포장(VM), 그리고 $CO_2$ 25%와 50%, $O_2$ 10%와 20%를 각각 혼합하여 충전한 가스포장(AM)을 $1^{\circ}C$에서 12일 동안 저장하면서 선도유지특성을 비교하였다. 팽이버섯의 호흡 속도는 $0^{\circ}C$에서 $26.4\;mL{\cdot}CO_2/kg/hr$, $10^{\circ}C$ $80.0\;mL{\cdot}CO_2/kg/hr$, $20^{\circ}C$에서 $130.9\;mL{\cdot}CO_2/kg/hr$, $30^{\circ}C$에서 $173.5 \;mL{\cdot}CO_2/kg/hr$로 조사되었으며, 기체투과율이 좋은 LDPE 필름을 사용할 경우 40 및 $60{\mu}m$ 보다 $20{\mu}m$의 두께가 저장 12일까지도 생육최저산소농도를 훨씬 상회하는 안정된 상태를 나타내었다. 따라서 팽이버섯을 $20{\mu}m$의 LDPE 필름에 상기 각각의 포장방법을 적용하여 저장한 결과 AM에서는 고농도의 $CO_2$에 의한 호흡율 억제효과가 있었으며 진공포장을 제외한 모든 포장방법에서 저장 종료시점(12일)까지도 혐기적 호흡의 발생우려는 없었다. 중량감소율과 표면색은 $O_2$가 없는 VM에서 가장 억제되었으나 산소함유 포장방법 중에서는 50:10($%CO_2:%O_2$)의 AM이 가장 우수한 억제력을 나타내었다. 그러나 VM은 저장 2일경 심한 이취발생으로, PM은 저장 5일 경 높은 자루의 신장율로 상품성을 소실한 반면 AM의 여러 가스조성 중 50:10의 비율이 저장 12일 동안 이취, 변색 및 곰팡이 발생 등이 발생하지 않으면서 상품성을 유지하는 효과가 가장 높게 나타났다.

편백나무 추출물을 함유한 다공성 필름 분석 (An Analysis of a Porous Film Containing $Chamaecyparis$ $obtusa$ Extract)

  • 김경이;이은경
    • 한국식품영양학회지
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    • 제24권4호
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    • pp.551-558
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    • 2011
  • 본 연구는 식품의 신선도를 유지하기 위한 효과적인 식품 포장 물질로서 항균성질을 갖는 편백나무 추출물을 함유한 다공성 필름의 성능과 효능을 알아보고자 하였다. 나무가 갖는 특유의 향인 피톤치드 정유는 휘발성 화학물질로서, 항균성 기능을 가지고 있는 천연물질이다. Limonene은 편백나무 정유중의 한 성분으로 분해없이 증류되며, 효과적인 항균성분을 나타내는 한편 비교적 안정한 테르펜류이다. 피톤치드 정유를 함유한 효과적인 항균성 필름을 제조하기 위한 용매의 최적조건을 찾은 결과, T-500:에탄올:경화제의 비율이 5:20:0.3이었고, 최소 항균성을 나타내는 피톤치드 정유의 농도는 2%였다. 피톤치드는 기체상 접촉을 통한 적용법이 항곰팡이성 효과가 크게 나타난다. 피톤치드를 포함한 필름들이 A-50LF1, A-25SF2, B-50SF1, C-50LF1, C-25SF2, D-50SF1와 같이 여러가지 다른 조건으로 만들어졌고, $1{\ell}$ 반응기 안에서 저장기간에 따르는 limonene 성분을 얻기 위하여 GC-MSD 분석을 하였다. 그 결과, 항균층 폭이 25 mm, 길이 20 cm인 필름 2개를 사용했을 때가 항균층 50 mm, 길이 20 cm 필름 1개를 사용했을 때보다 밀폐된 반응기에 limonene이 더 많이 보유되어 있음을 알 수 있었다. 이 결과는 필름 제조 시 안쪽 필름의 20 ${\mu}m$의 기공 쪽보다 옆 단면 층과 층 사이의 기체 확산이 더 크게 일어난다는 것을 보여주었다. 필름 두께가 피톤치드 방출량에 미치는 영향은 필름이 두꺼울수록 초기에는 오히려 덜 방출되었으나, 하루가 지나면서 저장기간이 길어질수록 방출량이 증가하는 경향을 보였다. $35^{\circ}C$와 70% 습도 조건에서 14일 동안 식빵 저장 실험에서 곰팡이 유무를 확인한 결과, 작은 사이즈 2개를 넣었을 때가 큰 사이즈 1개를 넣었을 때보다 저장기간이 길게 나타났다. 신선도 유지성분인 편백 정유가 갖는 항균성분 중, limonene의 방출 특성과 조건을 분석함으로써 필름조건의 자료를 공유하여 향후 식품에 대한 적용 확대가 기대된다.

표면이 마모된 틸팅 패드 저널베어링의 열윤활 해석 및 온도 측정 (Thermohydrodynamic Analysis and Pad Temperature Measurement of Tilting Pad Journal Bearing with Worn Pad)

  • 이동현;선경호;김병옥;강동혁
    • Tribology and Lubricants
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    • 제33권4호
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    • pp.134-140
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    • 2017
  • With the increase in adoption of tilting pad journal bearings (TPJBs), various failure mechanisms related to TPJBs have been reported, of which pad wear is a frequently reported one. Pad wear causes change in geometry of the bearing, which can sometimes result in the failure of the entire system. The objective of this research is to investigate the influence of pad wear on the pad temperature, which is one of the widely used condition monitoring methods for TPJBs. For the theoretical investigation, thermohydrodynamic (THD) analysis was conducted by solving the generalized Reynolds equation and the 3D energy equation. The results of the analysis show that the temperature of the loaded pad increases while that of the unloaded pad decreases, when there is wear on the loaded pads. In addition, the minimum film thickness decreases with an increase in the wear depth. A validation test was conducted with a test rig, which mimics the axial turbine when a test rotor is supported by two TPJBs. The test bearing consists of five pads with a diameter of 60 mm, and a resistance temperature detector (RTD) is installed in the pad for temperature monitoring. The test was performed by replacing the two loaded pads with the worn pad. The test result for the TPJB with wear depth of $30{\mu}m$ show that the temperatures of the loaded pads are $8^{\circ}C$ higher and that of the unloaded pad is $2.5^{\circ}C$ lower than that of the normal TPJB. In addition, the predicted pad temperature shows good agreement with the measured pad temperatures.

An Analytical Model for the Threshold Voltage of Short-Channel Double-Material-Gate (DMG) MOSFETs with a Strained-Silicon (s-Si) Channel on Silicon-Germanium (SiGe) Substrates

  • Bhushan, Shiv;Sarangi, Santunu;Gopi, Krishna Saramekala;Santra, Abirmoya;Dubey, Sarvesh;Tiwari, Pramod Kumar
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제13권4호
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    • pp.367-380
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    • 2013
  • In this paper, an analytical threshold voltage model is developed for a short-channel double-material-gate (DMG) strained-silicon (s-Si) on silicon-germanium ($Si_{1-X}Ge_X$) MOSFET structure. The proposed threshold voltage model is based on the so called virtual-cathode potential formulation. The virtual-cathode potential is taken as minimum channel potential along the transverse direction of the channel and is derived from two-dimensional (2D) potential distribution of channel region. The 2D channel potential is formulated by solving the 2D Poisson's equation with suitable boundary conditions in both the strained-Si layer and relaxed $Si_{1-X}Ge_X$ layer. The effects of a number of device parameters like the Ge mole fraction, Si film thickness and gate-length ratio have been considered on threshold voltage. Further, the drain induced barrier lowering (DIBL) has also been analyzed for gate-length ratio and amount of strain variations. The validity of the present 2D analytical model is verified with ATLAS$^{TM}$, a 2D device simulator from Silvaco Inc.

범프로 지지되는 다엽 포일을 갖는 가스 포일 베어링의 성능 해석 (Performance Predictions of Gas Foil Bearing with Leaf Foils Supported on Bumps)

  • 김태호;문형욱
    • Tribology and Lubricants
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    • 제34권3호
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    • pp.75-83
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    • 2018
  • Microturbomachinery (< 250 kW) using gas foil bearings can function without oil lubricants, simplify rotor-bearing systems, and demonstrate excellent rotordynamic stability at high speeds. State-of-the-art technologies generally use bump foil bearings or leaf foil bearings due to the specific advantages of each of the two types. Although these two types of bearings have been studied extensively, there are very few studies on leaf-bump foil bearings, which are a combination of the two aforementioned bearings. In this work, we illustrate a simple mathematical model of the leaf-bump foil bearing with leaf foils supported on bumps, and predict its static and dynamic performances. The analysis uses the simple elastic model for bumps that was previously developed and verified using experimental data, adds a leaf foil model, and solves the Reynolds equation for isothermal, isoviscous, and ideal gas fluid flow. The model predicts that the drag torques of the leaf-bump foil bearings are not affected significantly by static load and bearing clearance. Due to the preload effect of the leaf foils, rotor spinning, even under null static load, generates significant hydrodynamic pressure with its peak near the trailing edge of each leaf foil. A parametric study reveals that, while the journal eccentricity and minimum film thickness decrease, the drag torque, direct stiffness, and direct damping increase with increasing bump stiffness. The journal attitude angle and cross-coupled stiffness remain nearly constant with increasing bump stiffness. Interestingly, they are significantly smaller compared to the corresponding values obtained for bump foil bearings, thus, implying favorable rotor stability performance.

Size-dependent analysis of functionally graded ultra-thin films

  • Shaat, M.;Mahmoud, F.F.;Alshorbagy, A.E.;Alieldin, S.S.;Meletis, E.I.
    • Structural Engineering and Mechanics
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    • 제44권4호
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    • pp.431-448
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    • 2012
  • In this paper, the first-order shear deformation theory (FSDT) (Mindlin) for continuum incorporating surface energy is exploited to study the static behavior of ultra-thin functionally graded (FG) plates. The size-dependent mechanical response is very important while the plate thickness reduces to micro/nano scales. Bulk stresses on the surfaces are required to satisfy the surface balance conditions involving surface stresses. Unlike the classical continuum plate models, the bulk transverse normal stress is preserved here. By incorporating the surface energies into the principle of minimum potential energy, a series of continuum governing differential equations which include intrinsic length scales are derived. The modifications over the classical continuum stiffness are also obtained. To illustrate the application of the theory, simply supported micro/nano scaled rectangular films subjected to a transverse mechanical load are investigated. Numerical examples are presented to present the effects of surface energies on the behavior of functionally graded (FG) film, whose effective elastic moduli of its bulk material are represented by the simple power law. The proposed model is then used for a comparison between the continuum analysis of FG ultra-thin plates with and without incorporating surface effects. Also, the transverse shear strain effect is studied by a comparison between the FG plate behavior based on Kirchhoff and Mindlin assumptions. In our analysis the residual surface tension under unstrained conditions and the surface Lame constants are expected to be the same for the upper and lower surfaces of the FG plate. The proposed model is verified by previous work.