• 제목/요약/키워드: Surface geometry

검색결과 1,285건 처리시간 0.03초

유리섬유/폴리에스테르 복합재료 패널 접합부의 접착강도에 관한 표면성질의 효과 (Effect of Surface Properties on Adhesive Strength of Joint of Glass Fiber/Polyester Composite Panels)

  • 팜탄눗;염영진
    • 대한기계학회논문집A
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    • 제36권12호
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    • pp.1591-1597
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    • 2012
  • 복합재료 접합부의 접착강도에 대한 접착면 성질의 영향을 알아 보기 위해 불포화폴리에스테르, 우븐과 매트 유리섬유를 사용하여 복합재료 접합시편들을 제작하였다. 접착제, 복합재료 접착물, 말단접합과 이차접합 시편들의 기계적 성질을 실험에 의해 구하고 실험결과를 접합이론에 적용하였다. 6 개의 접합부들에서 발생하는 최대 및 평균 전단 응력은 최대 인장력과 접합 시편의 기하학적 변수들로부터 계산되었다. 실험 결과 접합면을 연마한 후 아세톤으로 처리한 경우가 말단접합의 3 가지 형태 중 가장 큰 강도를 가지고 있음이 관찰되었다. 마찬가지로 매트-매트와 매트-우븐 접합이 거의 같은 값으로 이차 접합의 3 가지 형태 중 가장 큰 강도를 가지고 있었다. 반대로 아무 처리도 하지 않은 접합시편과 우븐-우븐 접합시편은 매우 낮은 강도를 가졌다. 각각의 경우 파손은 접합부 양끝에서 심하게 발생하였고 접합부 가운데로 이동하였다.

정밀 선삭 가공 과정의 절삭력 예측모델 (Cutting Force Prediction in Single Point Diamond Turning)

  • 윤영식
    • 대한기계학회논문집
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    • 제17권6호
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    • pp.1456-1464
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    • 1993
  • 본 논문에서는 다이아몬드 공구를 사용한 절삭과정에 대하여 절삭력 관계식을 제안하고, 이를 실제 천연 다이아몬드 공구를 이용하여 알루미늄 합금을 절삭하는 실험해석을 통하여 절삭력을 예측하는 모델을 세우고자 한다.

이온화클러스터빔 증착법에 의한 구리 박막의 반도체 접촉구 메움 향상에 관한 연구 (Improvement of semiconductor contact hole filling of Copper by ionized cluster beam deposition technique)

  • 백민;손기황;김도진
    • 한국진공학회지
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    • 제7권2호
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    • pp.118-126
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    • 1998
  • 반도체 접촉구를 메우기 위하여 소오스의 직진성을 향상시키기 위한 연구를 수행하 였다. 이온화클러스터빔 증착법을 이용하는 동시에 셀의 구조를 개선하여 직진성 향상을 도 모하였다. 중성클러스터 만으로 구리를 증착할 경우 직진성은 매우 우수하였으나 소오스의 표면 이동이 적어 박막은 주상형으로 성장하며 측벽에의 증착은 거의 일어나지 않았으며 성 장에 따라 그림자효과로 인한 단차에서의 벽개가 관찰되었다. 그러나, 가속전압을 인가하여 전하를 띤 클러스터를 형성시켜 증착하였을 때 주상형 성장 모드는 사라졌으며, 직경 0.5$\mu$ m, aspect ratio 2의 접촉구에서 완벽한 바닥면의 도포성을 나타내었고, 측벽에의 증착성도 향상되어 막의 연결성이 개선되었다. 이로써 이온화 클러스터빔 증착법이 직진성을 향상시 켜 작은 접촉구의 메움을 향상시킬수 있는 물리적 증착 방법임을 확인하였다.

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자연하천에 대한 Muskingum-Cunge 모형의 매개변수 산정 (Estimation of Muskingum-Cunge Parameters for Natural Streams)

  • 김진수;전경수
    • 한국수자원학회논문집
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    • 제43권2호
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    • pp.233-243
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    • 2010
  • 하도의 횡단 및 종단 지형자료와 조도계수를 이용하여 자연하천에 대한 Muskingum-Cunge 모형의 매개변수들을 추정하는 방법을 제안하였다. 우선 각 단면에서의 다양한 수위에 대하여 통수단면 및 동수반경을 계산한 후, Manning 공식을 이용하여 유량을 산정한다. 이러한 과정은 하도에서의 모든 단면에 대하여 반복되며, 최종적으로 통수단면과 유량을 통한 회귀 분석에 의하여 매개변수들을 추정한다. 이와 같은 Muskingum-Cunge 모형의 매개변수 추정과정을 남한강 구간에 적용하였다. 추정된 매개변수들을 사용한 Muskingum-Cunge 모형의 계산결과는 무차원 RMS 오차, 첨두유량의 크기 및 발생시각 등 모든 면에서 HEC-1의 Muskingum-Cunge 모형에 비하여 동역학적 모형의 계산결과와 잘 일치하는 것으로 나타났다.

Effect of the Substrate Temperature on the Characteristics of CIGS Thin Films by RF Magnetron Sputtering Using a $Cu(In_{1-x}Ga_x)Se_2$ Single Target

  • Jung, Sung-Hee;Kong, Seon-Mi;Fan, Rong;Chung, Chee-Won
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제42회 동계 정기 학술대회 초록집
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    • pp.382-382
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    • 2012
  • CIGS thin films have received great attention as a promising material for solar cells due to their high absorption coefficient, appropriate bandgap, long-term stability, and low cost production. CIGS thin films are deposited by various methods such as co-evaporation, sputtering, spray pyrolysis and electro-deposition. The deposition technique is one of the most important processes in preparing CIGS thin film solar cells. Among these methods, co-evaporation is one of the best technique for obtaining high quality and stoichiometric CIGS films. However, co-evaporation method is known to be unsuitable for commercialization. The sputtering is known to be very effective and feasible process for mass production. In this study, CIGS thin films have prepared by rf magnetron sputtering using a $Cu(In_{1-x}Ga_x)Se_2$ single quaternary target without post deposition selenization. This process has been examined by the effects of deposition parameters on the structural and compositional properties of the films. In addition, we will explore the influences of substrate temperature and additional annealing treatment after deposition on the characteristics of CIGS thin films. The thickness of CIGS films will be measured by Tencor-P1 profiler. The crystalline properties and surface morphology of the films will be analyzed using X-ray diffraction and scanning electron microscopy, respectively. The optical properties of the films will be determined by UV-Visible spectroscopy. Electrical properties of the films will be measured using van der Pauw geometry and Hall effect measurement at room temperature using indium ohmic contacts.

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Real-Time Spacer Etch-End Point Detection (SE-EPD) for Self-aligned Double Patterning (SADP) Process

  • Han, Ah-Reum;Lee, Ho-Jae;Lee, Jun-Yong;Hong, Sang-Jeen
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제42회 동계 정기 학술대회 초록집
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    • pp.436-437
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    • 2012
  • Double patterning technology (DPT) has been suggested as a promising candidates of the next generation lithography technology in FLASH and DRAM manufacturing in sub-40nm technology node. DPT enables to overcome the physical limitation of optical lithography, and it is expected to be continued as long as e-beam lithography takes place in manufacturing. Several different processes for DPT are currently available in practice, and they are litho-litho-etch (LLE), litho-etch-litho-etch (LELE), litho-freeze-litho-etch (LFLE), and self-aligned double patterning (SADP) [1]. The self-aligned approach is regarded as more suitable for mass production, but it requires precise control of sidewall space etch profile for the exact definition of hard mask layer. In this paper, we propose etch end point detection (EPD) in spacer etching to precisely control sidewall profile in SADP. Conventional etch EPD notify the end point after or on-set of a layer being etched is removed, but the EPD in spacer etch should land-off exactly after surface removal while the spacer is still remained. Precise control of real-time in-situ EPD may help to control the size of spacer to realize desired pattern geometry. To demonstrate the capability of spacer-etch EPD, we fabricated metal line structure on silicon dioxide layer and spacer deposition layer with silicon nitride. While blanket etch of the spacer layer takes place in inductively coupled plasma-reactive ion etching (ICP-RIE), in-situ monitoring of plasma chemistry is performed using optical emission spectroscopy (OES), and the acquired data is stored in a local computer. Through offline analysis of the acquired OES data with respect to etch gas and by-product chemistry, a representative EPD time traces signal is derived. We found that the SE-EPD is useful for precise control of spacer etching in DPT, and we are continuously developing real-time SE-EPD methodology employing cumulative sum (CUSUM) control chart [2].

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스털링기관용 재생기에 관한 기초연구 (II) - 철망을 축열재로 한 재생기의 전열 및 유동손실특성 - (Basic Study on the Regenerator of Stilting Engine (II) - Heat transfer and flow friction loss characteristics of the regenerator with wire screen matrix -)

  • 김태한;이시민;이정택
    • Journal of Biosystems Engineering
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    • 제27권6호
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    • pp.529-536
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    • 2002
  • The performance of stilting engine, in particular, its energy conversion efficiencies are critically influenced by the regenerator characteristics. The regenerator characteristics are influenced by effectiveness, void fraction. heat transfer loss and fluid friction loss in the regenerator matrix. These factors were influenced by the surface geometry and material properties of the regenerator matrix. The regenerator design goals arc good heat transfer and low pressure drop of working Bas across the regenerator. Various data for designing a wire screen matrix have been given by Kays and London(1984). The mesh number of their experiment. however, was confined below the No. 60. which seems rather small for the Stirling engine applications. In this paper. in order to provide a basic data for the design of regenerator matrix, characteristics of heat transfer and flow friction loss were investigated by a packed mettled of matrix in oscillating flow as the same condition of operation in a Stirling engine. Seven kinds of sing1e wire screen meshes were used as the regenerator matrices. The results are summarized as follows; 1. While the working fluid flew slowly in the regenerator. the temperature difference was great at the both hot-blow(the working fluid flows from healer to cooler) and cold-blow(the working fluid flows from cooler to healer). On the other hand. while the working fluid flew fast. the temperature difference was not distinguished. 2. The No.150 wire screen used as the regenerator matrix showed excellent performance than tile others. 3. Phase angle variation and filling rate affected heat transfer or regenerator matrices. 4. Temperature difference between the inlet and outlet of the regenerator is very hish in degree of 120 phase angle.

Understanding Phytosanitary Irradiation Treatment of Pineapple Using Monte Carlo Simulation

  • Kim, Jongsoon;Kwon, Soon-Hong;Chung, Sung-Won;Kwon, Soon-Goo;Park, Jong-Min;Choi, Won-Sik
    • Journal of Biosystems Engineering
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    • 제38권2호
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    • pp.87-94
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    • 2013
  • Purpose: Pineapple is now the third most important tropical fruit in world production after banana and citrus. Phytosanitary irradiation is recognized as a promising alternative treatment to chemical fumigation. However, most of the phytosanitary irradiation studies have dealt with physiochemical properties and its efficacy. Accurate dose calculation is crucial for ensuring proper process control in phytosanitary irradiation. The objective of this study was to optimize phytosanitary irradiation treatment of pineapple in various radiation sources using Monte Carlo simulation. Methods: 3-D geometry and component densities of the pineapple, extracted from CT scan data, were entered into a radiation transport Monte Carlo code (MCNP5) to obtain simulated dose distribution. Radiation energy used for simulation were 2 MeV (low-energy) and 10 MeV (high-energy) for electron beams, 1.25 MeV for gamma-rays, and 5 MeV for X-rays. Results: For low-energy electron beam simulation, electrons penetrated up to 0.75 cm from the pineapple skin, which is good for controlling insect eggs laid just below the fruit surface. For high-energy electron beam simulation, electrons penetrated up to 4.5 cm and the irradiation area occupied 60.2% of the whole area at single-side irradiation and 90.6% at double-side irradiation. For a single-side only gamma- and X-ray source simulation, the entire pineapple was irradiated and dose uniformity ratios (Dmax/Dmin) were 2.23 and 2.19, respectively. Even though both sources had all greater penetrating capability, the X-ray treatment is safer and the gamma-ray treatment is more widely used due to their availability. Conclusions: These results are invaluable for optimizing phytosanitary irradiation treatment planning of pineapple.

전기활성 IPMC(ion-exchange Polymer Metal Composite) 구동기 제조 및 구동특성 연구 (Preparation and Characterization of Electro-Active IPMC(Ion-exchange Polymer Metal Composite) Actuator)

  • 이준호;이두성;김홍경;이영관;최혁렬;김훈모;전재욱;탁용석;남재도
    • 폴리머
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    • 제26권1호
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    • pp.105-112
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    • 2002
  • 연구는 electro-active polymer(EAP)의 특성을 가지는 ion-exchange polymer metal composite(IPMC)을 이용하여 지능형 대장내시경 개발에 목적을 두고 있다. IPMC는 낮은 구동전압과 빠른 반응속도로 인하여 매우 매력적인 물질이다. 본 연구에서는 IPMC구동기의 전극을 무전의 도금 방법을 이용하여 용액함침-환원방법(impregnation-reduction method)으로 제조하였으며 코팅된 백금전극의 횟수에 따라 변위와 변화를 측정하였다. 구동특성을 알아보기 위하여 길이, 주파수에 대한 변위, 힘을 측정하였으며, 주파수 대역은 저주파 대역과 공명주파수 대역을 사용하는 것이 적합하다는 결론을 얻었다. 또한 다양한 구동적 특성과 수분의 함량에 따른 영향에 대해 고전적 적층 이론 (classical laminate theory, CLT)을 이용하여 이방성 IPMC의 응력분포와 수분이동에 따른 모멘트, 변형률, 곡률(cuvature)을 모델링 하였다.

APOLLO2 YEAR 2010

  • Sanchez, Richard;Zmijarevi, Igor;Coste-Delclaux, M.;Masiello, Emiliano;Santandrea, Simone;Martinolli, Emanuele;Villate, Laurence;Schwartz, Nadine;Guler, Nathalie
    • Nuclear Engineering and Technology
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    • 제42권5호
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    • pp.474-499
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    • 2010
  • This paper presents the mostortant developments implemented in the APOLLO2 spectral code since its last general presentation at the 1999 M&C conference in Madrid. APOLLO2 has been provided with new capabilities in the domain of cross section self-shielding, including mixture effects and transfer matrix self-shielding, new or improved flux solvers (CPM for RZ geometry, heterogeneous cells for short MOC and the linear-surface scheme for long MOC), improved acceleration techniques ($DP_1$), that are also applied to thermal and external iterations, and a number of sophisticated modules and tools to help user calculations. The method of characteristics, which took over the collision probability method as the main flux solver of the code, allows for whole core two-dimensional heterogeneous calculations. A flux reconstruction technique leads to fast albeit accurate solutions used for industrial applications. The APOLLO2 code has been integrated (APOLLO2-A) within the $ARCADIA^{(R)}$ reactor code system of AREVA as cross section generator for PWR and BWR fuel assemblies. APOLLO2 is also extensively used by Electricite de France within its reactor calculation chain. A number of numerical examples are presented to illustrate APOLLO2 accuracy by comparison to Monte Carlo reference calculations. Results of the validation program are compared to the measured values on power plants and critical experiments.