• 제목/요약/키워드: Liquid structure

검색결과 1,708건 처리시간 0.03초

이광자 흡수 광중합에 의한 3차원 마이크로 쉘 구조물 제작 (Fabrication of Three-Dimensional Micro-Shell Structures Using Two-Photon Polymerization)

  • 박상후;임태우;양동열
    • 대한기계학회논문집A
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    • 제29권7호
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    • pp.998-1004
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    • 2005
  • A nano-stereolithography (NSL) process has been developed for fabrication of 3D shell structures which can be applied to various nano/micro-fluidic devices. By the process, a complicated 3D shell structure on a scale of several microns can be fabricated using lamination of layers with a resolution of 150 nm in size, so it does not require the use of my sacrificial layer or any supporting structure. A layer was fabricated by means of solidifying liquid-state monomers using two-photon absorption (TPA) induced using a femtosecond laser processing. When the polymerization process is finished, unsolidified liquid state resins can be removed easily by dropping several droplets of ethanol fur developing the fabricated structure. Through this work, some 3D shell structures, which can be applied to various applications such as nano/micro-fluidic devices and MEMS system, were fabricated using the developed process.

PVAm 용액의 종이 두께 방향 침투에 영향하는 인자들 (Factors Affecting Z-direction Penetration of PVAm Solution into Paper)

  • 최도침;원종명;조병욱
    • 펄프종이기술
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    • 제47권5호
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    • pp.104-111
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    • 2015
  • Factors influencing penetration of PVAm solution into paper during impregnation were investigated with ultrasonic Penetration Evenness Analyzer (PEA). Paper structure was varied by changing basis weight, freeness of pulp, calendering, and filler addition, and hydrophobicity of paper was varied by adding AKD. In addition, the viscosity of PVAm solution was varied by changing the concentration of PVAm solution. Important factors influencing penetration of PVAm solution into paper were found to be the pore structure and the hydrophobicity of paper, and the viscosity of PVAm solution. Pore structure of paper could be controlled by refining degree and filler addition and hydrophobicity of paper could be controlled by internal sizing. Denser structure of paper, higher hydrophobicity and higher liquid viscosity slowed down the penetration of PVAm solution into paper.

Computational modeling of coupled fluid-structure systems with applications

  • Kerboua, Y.;Lakis, A.A.;Thomas, M.;Marcouiller, L.
    • Structural Engineering and Mechanics
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    • 제29권1호
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    • pp.91-111
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    • 2008
  • This paper outlines the development of a computational model in order to analyze the dynamic behaviour of coupled fluid-structure systems such as a) liquid containers, b) a set of parallel or radial plates. In this work a hybrid fluid-solid element is developed, capable of simulating both membrane and bending effects of the plate. The structural mass and stiffness matrices are determined using exact integration of governing equations which are derived using a combination of classical plate theory and a finite element approach. The Bernoulli equation and velocity potential function are used to describe the liquid pressure applied on the solid-fluid element. An impermeability condition assures a permanent contact at the fluid-structure interface. Applications of this model are presented for both parallel and radial plates as well as fluid-filled rectangular reservoir. The effect of physical parameters on the dynamic behaviour of a coupled fluid-structure system is investigated. The results obtained using the presented approach for dynamic characteristics such as natural frequency are in agreement to those calculated using other theories and experiments.

3차원 마이크로 디바이스 개발을 위한 나노 스테레오리소그래피 공정 개발에 관한 연구 (Development of Nano-Stereolithography Process for Precise Fabrication of Three-Dimensional Micro-Devices)

  • 박상후;임태우;양동열;이신욱;공홍진;이광섭
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제55권1호
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    • pp.45-49
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    • 2006
  • A nano-stereolithography (NSL) process has been developed for the fabrication of three-dimensional (3D) micro-devices with high spatital resolution of approximately 100 nm. In the NSL process, a complicated 3D structure can be created by stacking layer-by-layer, so it does not require any sacrificial layer or any supporting structure. A laminated layer was fabricated by means of solidifying liquid-state monomers using two-photon absorption (TPA) which was induced by a femtosecond laser. When the fabrication of a 3D stacked structure was finished, unsolidified liquid resins were rinsed by ethanol to develop the fabricated structures; then, the polymerized structure was only left on the glass substrate. Through this work, several 3D microstructures such as a micro-channel, shell structures, and photonic crystals were fabricated to evaluate the possibility of the developed system.

A fragmentation database of soyasaponins by liquid chromatography with a photodiode array detector and tandem mass spectrometry

  • Son, Haereon;Mukaiyama, Kyosuke;Omizu, Yohei;Tsukamoto, Chigen
    • 분석과학
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    • 제34권4호
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    • pp.172-179
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    • 2021
  • Oleanane-type triterpenoids exist as secondary metabolites in various plants. In particular, soyasaponin, an oleanane-type triterpenoid, is abundant in the hypocotyl of soybean, one of the most widely cultivated crops in the world. Depending on their chemical structure, soyasaponins are categorized as group A saponins or group DDMP (2,3-dihydro-2,5-dihydroxy-6-methyl-4H-pyran-4-one) saponins. The different soyasaponin chemical structures present different health functionalities and taste characteristics. However, conventional phenotype screening of soybean requires a substantial amount of time for functionality of soyasaponins. Therefore, we attempted to use liquid chromatography with a photodiode array detector and tandem mass spectrometry (LC-PDA/MS/MS) for accurately predicting the phenotype and chemical structure of soyasaponins in the hypocotyl of five common soybean natural mutants. In this method, the aglycones (soyasapogenol A [SS-A] and soyasapogenol B [SS-B]) were detected after acid hydrolysis. These results indicated that the base peak and fragmentation differ depending on the chemical structure of soyasaponin with aglycone. Thus, a fragmentation database can help predict the chemical structure of soyasaponins in soyfoods and plants.

수지상 우라늄 성장억제를 위한 액체카드뮴 음극구조 개발 (Development of Liquid Cadmium Cathode Structure for the Inhibition of Uranium Dendrite Growth)

  • 백승우;윤달성;김시형;심준보;안도희
    • 방사성폐기물학회지
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    • 제8권1호
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    • pp.9-17
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    • 2010
  • 액체카드뮴음극(LCC, Liquid Cadmium Cathode)을 사용하여 우라늄과 TRU (TRans Uranium) 원소를 동시에 회수하는 전해제련공정에서 LCC 표면에서 성장하는 수지상(dendrite) 우라늄의 생성 및 성장을 억제하기 위한 LCC 구조는 개발은 전해제련공정의 핵심이다. 금속 수지상의 생성과 성장 현상을 관찰하기 위해 상온에서 실험이 가능하며 육안관찰이 가능한 Zn-Ga 계의 모의실험장치를 제작하였으며 갈륨 계면에서의 수지상 아연의 성장 현상과 기존의 교반기형과 파운더형 LCC 구조의 성능을 관찰하였다. 이러한 금속 수지상은 전해용액 내에서 그 기계적 강도가 약한 것으로 보여 여러 가지 음극 구조에 의해 쉽게 파쇄 되지만 액체금속으로 쉽게 가라앉지는 않았다. 모의 실험결과를 바탕으로, LCC 구조개발에 활용할 수 있는 실험실 규모의 액체음극 전해제련 실험 장치를 제작하였으며, 수지상 우라늄의 성장 억제를 위한 여러 가지 형태의 LCC 구조의 성능 시험을 수행하였다. 교반기형 LCC 구조의 실험결과 LCC 도가니 내벽에서 성장하는 수지상 우라늄을 효과적으로 파쇄하지 못하였으며, 일자형과 harrow형 LCC 구조의 성능은 유사하였다. 이에 따라 LCC 표면과 도가니 내벽에서 성장하는 수지상 우라늄을 LCC 도가니 바닥으로 침전시키기 위하여 mesh형 LCC 구조를 개발하였다. 이의 성능실험결과 수지상 우라늄의 성장 없이 약 5 wt%까지의 우라늄을 회수할 수 있었다. 실험 종료 후 LCC 바닥 침전물을 화학 분석한 결과 금속간화합물(UCd11)이 형성되었음을 확인할 수 있었다.

High Out-of-Plane Alignment of Liquid Crystalline Methacrylate Copolymer Bearing Photoreactive 4-Styrylpyridine Moiety

  • Kwak, Gi-Seop;Kong, Jong-Yun;Kim, Min-Woo;Hyun, Seok-Hee;Kim, Woo-Sik
    • Macromolecular Research
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    • 제17권4호
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    • pp.271-275
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    • 2009
  • This paper describes the out-of-plane order of a liquid crystalline(LC) methacrylate copolymer(3) comprised of a methacrylate(1) with a 4-styrylpyridine moiety as the photo-cyclodimerizable group and a benzoate moiety as the mesogenic group in the side chain, and another methacrylate(2) with a 4-(4-methoxyphenyl)benzoate moiety as the mesogenic group. The composition of 1 and 2 units in 3 was estimated to have a molar ratio of 54.2:45.8 by $^{1}H$ NMR spectroscopy. The X-ray diffraction study revealed that the copolymer forms a partial bilayer smectic structure. The copolymer gave rise to a high out-of-plane order parameter of about 0.74 in a wide LC temperature range of $110{\sim}160^{\circ}C$ after linearly polarized, UV light irradiation and subsequent annealing. Moreover, the external reflection IR analysis indicated that excess UV-light irradiation makes the out-of-plane LC structure of the copolymer appear in a higher and wider temperature range.

추진제의 마이크로 스케일 상면 두께 예측 (Predicting Micro-Thickness of Phase Fronts in Propellants)

  • 여재익
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2005년도 제25회 추계학술대회논문집
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    • pp.13-21
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    • 2005
  • 이 논문은 발열 반응에서 상이 변화하는 물질의 연속 방정식에서 유도되는 안정된 파면의 구조를 고려했다. 특별히 액체와 기체, 고체와 액체 사이의 동적인 파면 구조를 수치적으로 연구하였다. 1차원 충격파 구조 분석에 근거한 본 연구에 의하면 연소 시 나노 사이즈의 파면이 존재한다고 추정한다. 설명을 위해, 증발과 응축에는 n-heptane이 사용되었고, 용해와 응고에는 HMX를 사용하였다. 이 개념의 확장은 로켓 추진제와 같이 액체, 고체 연료의 넓은 범위 모두를 포함한다.

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다공물질 표면처리가 경사판의 증발냉각에 미치는 영향에 관한 실험적 연구 (An Experimental Study on the Effects of Porous Layer Treatment on Evaporative Cooling of an Inclined Surface)

  • 이대영;이재완;강병하
    • 설비공학논문집
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    • 제17권1호
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    • pp.25-32
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    • 2005
  • Falling film heat transfer has been widely used in many applications in which heat and mass transfer occur simultaneously, such as evaporative coolers, cooling towers, absorption chillers, etc. In such cases, it is desirable that the falling film spreads widely on the surface forming thin liquid film to enlarge contact surface and to reduce the thermal resistance across the film and/or the flow resistance to the vapor stream over the film. In this work, the surface is treated to have thin porous layer on the surface. With this treatment, the liquid can be spread widely on the surface by the capillary force resulting from the porous structure. In addition to this, the liquid can be held within the porous structure to improve surface wettedness regardless of the surface inclination. The experiment on the evaporative cooling of an inclined surface has been conducted to verify the effectiveness of the surface treatment. It is measured that the evaporative heat transfer increases about $50\%$ by the porous layer treatment as compared with that from orignal bare surfaces.

Blends of Silicone Rubber and Liquid Crystalline Polymer

  • Shivakumar E.;Das C. K.;Pandey K. N.;Alam S.;N.Mathur G.
    • Macromolecular Research
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    • 제13권2호
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    • pp.81-87
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    • 2005
  • Blends of silicone rubber (VMQ) and liquid crystalline polymer (LCP) were prepared by the melt mixing technique. Mechanical, XRD, thermal and dynamic mechanical investigations are reported for the pure silicone rubber and blends. The mechanical properties, viz. the tensile strength, tear strength and elongation at break, of the silicone rubber decreased with the addition of LCP. The SEM study on the tensile fractured surface of the blends revealed that they had a two phase structure, and that the failure was mainly due to fiber pull out, which suggests that the VMQ and LCP are incompatible in all of the proportions examined in this study. However, the FTIR study shows that there was a partial interaction between the VMQ and LCP, but which may not be sufficient to grip the fibrils under the applied load. In the XRD analysis, it was observed that the crystalline structure of the silicone rubber deteriorated in the presence of LCP. The DMA study suggested that the storage modulus of the silicone rubber was improved with the addition of LCP, due to the high modulus of the LCP phase. The thermal stability of the silicone rubber was greatly reduced by the addition of LCP, due to the latter having a thermal stability lower than that of silicone rubber.