• 제목/요약/키워드: Nano/Micro Structures

검색결과 216건 처리시간 0.028초

Investigating vibration behavior of smart imperfect functionally graded beam subjected to magnetic-electric fields based on refined shear deformation theory

  • Ebrahimi, Farzad;Jafari, Ali
    • Advances in nano research
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    • 제5권4호
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    • pp.281-301
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    • 2017
  • In this disquisition, an exact solution method is developed for analyzing the vibration characteristics of magneto-electro-elastic functionally graded (MEE-FG) beams by considering porosity distribution and various boundary conditions via a four-variable shear deformation refined beam theory for the first time. Magneto-electroelastic properties of porous FG beam are supposed to vary through the thickness direction and are modeled via modified power-law rule which is formulated using the concept of even and uneven porosity distributions. Porosities possibly occurring inside functionally graded materials (FGMs) during fabrication because of technical problem that lead to creation micro-voids in FG materials. So, it is necessary to consider the effect of porosities on the vibration behavior of MEE-FG beam in the present study. The governing differential equations and related boundary conditions of porous MEE-FG beam subjected to physical field are derived by Hamilton's principle based on a four-variable tangential-exponential refined theory which avoids the use of shear correction factor. An analytical solution procedure is used to achieve the natural frequencies of porous-FG beam supposed to magneto-electrical field which satisfies various boundary conditions. A parametric study is led to carry out the effects of material graduation exponent, porosity parameter, external magnetic potential, external electric voltage, slenderness ratio and various boundary conditions on dimensionless frequencies of porous MEE-FG beam. It is concluded that these parameters play noticeable roles on the vibration behavior of MEE-FG beam with porosities. Presented numerical results can be applied as benchmarks for future design of MEE-FG structures with porosity phases.

나노리소그라피 기술을 이용한 초소수성 불소 실란 분자의 나노패턴 제조 (Fabrication of Superhydrophobic molecules Nanoarray by Dip-pen Nanolithography)

  • 연경흠;강필선;김경민;임정혁
    • 접착 및 계면
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    • 제19권4호
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    • pp.163-166
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    • 2018
  • 이 딥펜 나노리소그라피(DPN)는 원자 힘 현미경(AFM)을 기반으로 하는 나노 및 마이크로 패턴 제조 기술이다. 다양한 잉크 물질을 AFM 탐침에 코팅하여 탐침과 기판 사이에 형성된 물 메니스커스를 통해 기판으로 전이시켜 패턴을 제조한다. 본 연구에서는, 실란 전처리된 AFM 탐침 표면에 불소 실란 잉크 용액을 코팅하고 하이드록시기로 개질된 실리콘 기판 위에 접촉시킨 후, DPN 기술을 이용하여 표면으로 잉크 물질을 전이시키는 연구를 진행하였다. HDFDTMS 잉크 물질의 dot 어레이 패턴을 안정적으로 제조하였으며, AFM 탐침과 기판 사이의 접촉시간에 따라 패턴 크기가 선형적으로 증가하는 전형적인 DPN의 확산 메커니즘을 보였다.

P-형 실리콘에 형성된 정렬된 매크로 공극 (Ordered Macropores Prepared in p-Type Silicon)

  • 김재현;김강필;류홍근;서홍석;이정호
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2008년도 하계학술대회 논문집 Vol.9
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    • pp.241-241
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    • 2008
  • Macrofore formation in silicon and other semiconductors using electrochemical etching processes has been, in the last years, a subject of great attention of both theory and practice. Its first reason of concern is new areas of macropore silicone applications arising from microelectromechanical systems processing (MEMS), membrane techniques, solar cells, sensors, photonic crystals, and new technologies like a silicon-on-nothing (SON) technology. Its formation mechanism with a rich variety of controllable microstructures and their many potential applications have been studied extensively recently. Porous silicon is formed by anodic etching of crystalline silicon in hydrofluoric acid. During the etching process holes are required to enable the dissolution of the silicon anode. For p-type silicon, holes are the majority charge carriers, therefore porous silicon can be formed under the action of a positive bias on the silicon anode. For n-type silicon, holes to dissolve silicon is supplied by illuminating n-type silicon with above-band-gap light which allows sufficient generation of holes. To make a desired three-dimensional nano- or micro-structures, pre-structuring the masked surface in KOH solution to form a periodic array of etch pits before electrochemical etching. Due to enhanced electric field, the holes are efficiently collected at the pore tips for etching. The depletion of holes in the space charge region prevents silicon dissolution at the sidewalls, enabling anisotropic etching for the trenches. This is correct theoretical explanation for n-type Si etching. However, there are a few experimental repors in p-type silicon, while a number of theoretical models have been worked out to explain experimental dependence observed. To perform ordered macrofore formaion for p-type silicon, various kinds of mask patterns to make initial KOH etch pits were used. In order to understand the roles played by the kinds of etching solution in the formation of pillar arrays, we have undertaken a systematic study of the solvent effects in mixtures of HF, N-dimethylformamide (DMF), iso-propanol, and mixtures of HF with water on the macrofore structure formation on monocrystalline p-type silicon with a resistivity varying between 10 ~ 0.01 $\Omega$ cm. The etching solution including the iso-propanol produced a best three dimensional pillar structures. The experimental results are discussed on the base of Lehmann's comprehensive model based on SCR width.

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자가정렬형 나노구조 Co-22%Cr합금 박막의 기판온도에 따른 미세 도메인 구호 (Magnetic Domain Structures with Substrate Temperatures in Co-22%Cr Alloy Thin Films)

  • 송오성
    • 한국자기학회지
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    • 제11권5호
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    • pp.184-188
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    • 2001
  • DC-스퍼터를 이용하여 기판온도를 실온과 20$0^{\circ}C$로 변화시켜 , 균일한 내부구조를 갖는 구조와 결정립내부에 미세한 자가정렬나노구조(SONS)를 갖는 Co-22%Cr 합금 박막을 각각 제조하고 이들의 미세구조와 도메인구조를 투과전자현미경(TEM)과 자기력현미경(MFM)을 이용하여 확인하였다. Co가 먼저 부식되도록 조치하고 관찰한 투과전자현미경 결과, 실온에서 제작된 박막의 경우에는 결정립 내부가 균일한 조성을 보인 반면, 기판온도가 20$0^{\circ}C$인 Co-22%Cr합금 박막은 결정립 내부에 SONS를 형성하여 판상의 미세 Co-과잉상을 가지는 특이한 미세구조를 가지는 것을 확인하였다. 자기력현미경에 의해 확인된 결과, SONS가 없는 시편(기판온도를 실온으로 유지한 경우)은 주기 5000 정도의 미로형 도메인(domains)이 생겼다. 미로형 도메인은 결정간의 교환에너지가 큰 경우 발생하는 구조로서 고밀도 자기기록이 불리할 것이 예상되었다. 이와 비교해서 SONS가 생성된 (기판온도를 20$0^{\circ}C$로 유지한 경우)시편은 주기 500 정도의 매우 미세한 구형 도메인을 보였다. 미세구형 도메인은 각 도메인간의 교환에너지가 작아 열적 변화에도 데이터가 안정하므로 고밀도 기록에 유리하다고 예상되었다.

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울산만 내측과 외측에서 계절적 환경요인의 변화에 의한 식물플랑크톤 성장 및 분포 (Seasonal Phytoplankton Growth and Distribution Pattern by Environmental Factor Changes in Inner and Outer Bay of Ulsan, Korea)

  • 이민지;김동선;김영옥;손문호;문창호;백승호
    • 한국해양학회지:바다
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    • 제21권1호
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    • pp.24-35
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    • 2016
  • 2014년 울산만 내, 외측 해역에서 해양환경의 계절 변화가 식물플랑크톤 군집의 공간 분포에 미치는 영향을 파악하였다. 울산만을 태화강 하구에 위치한 내측과 외양 영향을 강하게 받는 외측으로 나누어, 내측과 외측의 환경 차이를 t-test로 검증하였다. 수온은 동계(t = -5.833, p < 0.01)와 추계(p > 0.05)에는 외측이 높았고, 춘계(t = 4.247, p < 0.01)와 하계(t = 2.876, p < 0.05)에는 내측이 높았다. 염분은 추계를 제외한 모든 계절에 내측에서 외측보다 유의하게 낮았다(p < 0.01). 동계에는 수층 혼합에 의해 전 수층에서 영양염 농도가 높았고, 하계에는 담수 유입으로 내측 표층에서 현저하게 높았다. 크기 분획된 Chl. a 양은 $20{\mu}m$보다 작은 크기의 nano, pico식물플랑크톤의 양이 많았다. 극미소 식물플랑크톤은 영양염 농도가 낮은 외양 환경에서 적응력이 높은데 이러한 결과는 조사해역이 외양의 영향을 강하게 받고 있음을 시사한다. 춘계와 하계에는 내측 정점을 중심으로 유글레나류 Eutreptiella gymnastica의 밀도가 특이적으로 높았다. 이는 강우 후 많은 담수가 유입되어 저염분 환경이 조성되고 DIN (nitrate+nitrite, ammonium)이 대량 공급되었기 때문이다. 하계에는 태화강으로부터 다량의 담수가 공급되어 담수미세 남조류 Oscillatoria sp., Microcystis sp.가 내측 정점(1-5)을 중심으로 높은 밀도로 출현하였다. 추계와 동계에는 규조류와 은편모류가 우점하였다. 높은 현존량을 보인 중심 규조류Chaetoceros 속은 성층 약화로 저층에서 공급되는 영양염류의 영향을 받아 빠르게 성장하였고, 은편모조류는 다른 식물플랑크톤의 상대적인 성장 둔화로 기회적으로 우점하였다. 결과적으로 울산만은 강우기인 춘계와 하계에 태화강의 영향을 강하게 받아 내측 정점을 중심으로 저염분, 고영양염 환경이 유지되었고, 추계와 동계에는 만 외측 외양수의 영향을 크게 받았으며, 식물플랑크톤 군집은 크게 이 두가지 환경요인에 의해 계절적으로 제어되는 것으로 판단되었다.

Recent research activities on hybrid rocket in Japan

  • Harunori, Nagata
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2011년도 제36회 춘계학술대회논문집
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    • pp.1-2
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    • 2011
  • Hybrid rockets have lately attracted attention as a strong candidate of small, low cost, safe and reliable launch vehicles. A significant topic is that the first commercially sponsored space ship, SpaceShipOne vehicle chose a hybrid rocket. The main factors for the choice were safety of operation, system cost, quick turnaround, and thrust termination. In Japan, five universities including Hokkaido University and three private companies organized "Hybrid Rocket Research Group" from 1998 to 2002. Their main purpose was to downsize the cost and scale of rocket experiments. In 2002, UNISEC (University Space Engineering Consortium) and HASTIC (Hokkaido Aerospace Science and Technology Incubation Center) took over the educational and R&D rocket activities respectively and the research group dissolved. In 2008, JAXA/ISAS and eleven universities formed "Hybrid Rocket Research Working Group" as a subcommittee of the Steering Committee for Space Engineering in ISAS. Their goal is to demonstrate technical feasibility of lowcost and high frequency launches of nano/micro satellites into sun-synchronous orbits. Hybrid rockets use a combination of solid and liquid propellants. Usually the fuel is in a solid phase. A serious problem of hybrid rockets is the low regression rate of the solid fuel. In single port hybrids the low regression rate below 1 mm/s causes large L/D exceeding a hundred and small fuel loading ratio falling below 0.3. Multi-port hybrids are a typical solution to solve this problem. However, this solution is not the mainstream in Japan. Another approach is to use high regression rate fuels. For example, a fuel regression rate of 4 mm/s decreases L/D to around 10 and increases the loading ratio to around 0.75. Liquefying fuels such as paraffins are strong candidates for high regression fuels and subject of active research in Japan too. Nakagawa et al. in Tokai University employed EVA (Ethylene Vinyl Acetate) to modify viscosity of paraffin based fuels and investigated the effect of viscosity on regression rates. Wada et al. in Akita University employed LTP (Low melting ThermoPlastic) as another candidate of liquefying fuels and demonstrated high regression rates comparable to paraffin fuels. Hori et al. in JAXA/ISAS employed glycidylazide-poly(ethylene glycol) (GAP-PEG) copolymers as high regression rate fuels and modified the combustion characteristics by changing the PEG mixing ratio. Regression rate improvement by changing internal ballistics is another stream of research. The author proposed a new fuel configuration named "CAMUI" in 1998. CAMUI comes from an abbreviation of "cascaded multistage impinging-jet" meaning the distinctive flow field. A CAMUI type fuel grain consists of several cylindrical fuel blocks with two ports in axial direction. The port alignment shifts 90 degrees with each other to make jets out of ports impinge on the upstream end face of the downstream fuel block, resulting in intense heat transfer to the fuel. Yuasa et al. in Tokyo Metropolitan University employed swirling injection method and improved regression rates more than three times higher. However, regression rate distribution along the axis is not uniform due to the decay of the swirl strength. Aso et al. in Kyushu University employed multi-swirl injection to solve this problem. Combinations of swirling injection and paraffin based fuel have been tried and some results show very high regression rates exceeding ten times of conventional one. High fuel regression rates by new fuel, new internal ballistics, or combination of them require faster fuel-oxidizer mixing to maintain combustion efficiency. Nakagawa et al. succeeded to improve combustion efficiency of a paraffin-based fuel from 77% to 96% by a baffle plate. Another effective approach some researchers are trying is to use an aft-chamber to increase residence time. Better understanding of the new flow fields is necessary to reveal basic mechanisms of regression enhancement. Yuasa et al. visualized the combustion field in a swirling injection type motor. Nakagawa et al. observed boundary layer combustion of wax-based fuels. To understand detailed flow structures in swirling flow type hybrids, Sawada et al. (Tohoku Univ.), Teramoto et al. (Univ. of Tokyo), Shimada et al. (ISAS), and Tsuboi et al. (Kyushu Inst. Tech.) are trying to simulate the flow field numerically. Main challenges are turbulent reaction, stiffness due to low Mach number flow, fuel regression model, and other non-steady phenomena. Oshima et al. in Hokkaido University simulated CAMUI type flow fields and discussed correspondence relation between regression distribution of a burning surface and the vortex structure over the surface.

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