• Title/Summary/Keyword: 수직마이크로관

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키토산 마이크로 플레이크와 그 제조방법 - 발명의 요약 -

  • 유현오
    • 발명특허
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    • v.27 no.5 s.311
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    • pp.68-74
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    • 2002
  • 본 발명은 키토산으로 이루어진 무수히 많은 갯수의 박막필름이 시트 평면에 수직, 수평 또는 경사 방향으로 일정간격의 공간을 유지하면서 적충되어서 라멜라구조를 형성하고 이 박막필름들이 일정한 간격으로 가지런히 나열되어 형성된 키토산 마이크로 플레이크로 이루어진 층상 격막시트에 관한 것이다. 두께 $1\mu{m}$내지 $50\mu{m}$로 라멜라구조를 이루는 키토산 박막필름이 $1\mu{m}$내지 $10000\mu{m}$의 공기간격을 두고 누적층을 형성하고 시트평면과$0^{\circ}C$내지$180^{\circ}C$사이의 일정 각도로 균일하게 배열되어 있어 수직, 수평 또는 경사방향으로 키토산 박막필름이 가지런히 배열되어 있는 키토산으로 조성된 수용성 층상 격막시트에 관한 것이다. 본 발명은 키토산을 약산성 액상에서 용해, 숙성 시켜 추출 고화 시키는 과정에서 수직, 수평 및 경사방향으로 키토산 마이크로 플레이크가 층상 라멜라구조를 이루는 키토산 격막시트를 형성시켜 줌으로 임상의학적 적용시 각각의 키토산 박막필름 사이의 균일한 공간으로 다양한 약물의 적용이 가능하며 특히 액상의 약재를 적용시 모세관의 원리에 따라서 약물이 원활하게 공급되는 약전성이 매우 우수하고 약물의 포집성이 획기적으로 부과된 재료로 사용될 수 있으며 키토산을 용해시켜 이용하는 산업에서 물에 신속하고 완전한 용해특성을 나타내는 키토산 원료물질로 사용될 수 있는 것이다.

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An experimental study on heat transfer characteristics in a vertical micro-fin tube during evaporation process of carbon dioxide flowing upward (이산화탄소의 마이크로 핀관 내 상향유동 증발열전달 특성에 관한 연구)

  • Kim, Yong-Jin;Cho, Jin-Min;Kim, Min-Soo
    • Proceedings of the SAREK Conference
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    • 2007.11a
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    • pp.247-251
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    • 2007
  • Because of the ozone layer depletion and global warming, new alternative refrigerants are being developed. In this study, evaporation heat transfer characteristics of carbon dioxide flowing upward in a vertical micro-fin tube have been investigated by experiment. Before a test section, a pre-heater is installed to adjust the inlet quality of the refrigerant to a desired value. The micro-fin tube with outer diameter of 5 mm and length of 1.44 m was selected as the test section. The test was conducted at mass fluxes of 318 to $530\;kg/m^2s$, saturation temperature of -5 to $5^{\circ}C$, and heat fluxes of 15 to $30\;kW/m^2$. As the vapor quality increases, the heat transfer coefficients of carbon dioxide are increased, and the heat transfer coefficients increase when the heat fluxes and saturation temperatures increase, and there was not much of influence of mass flux on the heat transfer coefficients.

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Formation of GaN microstructures using metal catalysts on the vertex of GaN pyramids (금속촉매를 이용한 GaN 피라미드 꼭지점 위의 마이크로 GaN 구조 형성)

  • Yun, W.I.;Jo, D.W.;Ok, J.E.;Jeon, H.S.;Lee, G.S.;Jung, S.K.;Bae, S.M.;Ahn, H.S.;Yang, M.
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.21 no.3
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    • pp.110-113
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    • 2011
  • In this paper, we propose a new method for the fabrication of GaN microstructures formed only on the vertex of GaN pyramid by using of metal catalysts. GaN pyramidal structures were selectively grown on 3 ${\mu}m$ $SiO_2$ dot patterns followed by thin film deposition of Au and Cr only on the vertex area of the GaN pyramids with precisely controlled photolithography. After the metal deposition, the samples were loaded in the MOVPE reactor for the growth of GaN microstructures for 10 minutes. Temperature for the growth of the GaN microstructures was changed from $650^{\circ}C$ to $750^{\circ}C$. Rod type GaN microstructures were grown in the direction of vertical to the six {1-101} facets and the shape of the GaN microstructures was changed depend on the type of metal.

Locomotion Characteristics of a Foxtail and a Foxtail-like Robot (강아지풀 및 강아지풀모사로봇의 이동특성에 관한 연구)

  • Lee, Min-Su;Kim, Yeong-Hyeok;Leem, Sang-Huyck;Kim, Byung-Kyu
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.34 no.12
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    • pp.1893-1899
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    • 2010
  • A foxtail moves forward on a flat surface when pushed by a vertical force. The distance moved by the foxtail depends on the degree of deformation. We experimentally investigated the main parameters that influence the distance moved while varying the pushing force, area, and velocity. We then fabricated a nylon barb that mimics the foxtail barb and performed theoretical and experimental analyses of the displacement according to the acting force and the deflection. In addition, we investigated the relation between the displacement and the angle of a foxtail-like robot's leg by varying the clearance between the robot body and the inner surface of the pipe. To find the design parameters of the barb of the robot for tubular-type digestive organs and blood vessels, we studied the relation between the acting force and the elastic modulus while varying the leg diameter.