• 제목/요약/키워드: 2D Periodic Structures

검색결과 37건 처리시간 0.024초

섬유강화 복합재료를 이용한 반원통형 전자파 흡수구조의 설계 및 제작 (Design and Fabrication of Semi-cylindrical Radar Absorbing Structure using Fiber-reinforced Composites)

  • 장홍규;신재환;김천곤;신상훈;김진봉
    • Composites Research
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    • 제23권2호
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    • pp.17-23
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    • 2010
  • 스텔스 기술은 적진에서 항공기나 함정의 생존 가능성을 향상시키고 임무 수행 능력을 향상 시킬 수 있다. 본 논문의 목적은 섬유강화 복합재료를 이용하여 하중지지가 가능한 곡면부 형상을 갖는 저피탐지 구조를 제안하고 군사적 활용을 위한 전방위 스텔스 플랫폼의 개발 가능성을 보여주는 것이다. 본 연구에서는 곡면을 갖는 물체의 레이더 반사면적을 줄이기 위해서 기존의 circuit analog 흡수체에 기반을 둔 전자파 흡수구조를 개발하였다. 먼저 상용 3차원 전자기장 해석 프로그램을 이용하여 사각 주기격자 패턴의 전도성 고분자 층을 갖는 전자파 흡수구조를 설계하고 성능을 해석하였다. 다음으로 섬유강화 복합재료와 전도성 고분자 재료를 이용하여 설계된 반원통형 전자파 흡수구조를 제작하였다. 저항성 시트로 작용하는 주기격자 패턴층을 제작하기 위해서 PEDOT를 기반으로 하여 폴리우레탄을 바인더로 갖는 전도성 고분자 페이스트를 사용하였다. 마지막으로 제작된 RAS의 전자파 흡수 성능을 평가하기 위해 POSTECH의 compact range 장비를 이용하여 레이더 반사면적을 측정하였다.

Vibrations of Complete Paraboloidal Shells with Variable Thickness form a Three-Dimensional Theory

  • 장경호;심현주;강재훈
    • 한국공간구조학회논문집
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    • 제4권4호
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    • pp.113-128
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    • 2004
  • A three-dimensional (3-D) method of analysis is presented for determining the free vibration frequencies and mode shapes of solid paraboloidal and complete (that is, without a top opening) paraboloidal shells of revolution with variable wall thickness. Unlike conventional shell theories, which are mathematically two-dimensional (2-D), the present method is based upon the 3-D dynamic equations of elasticity. The ends of the shell may be free or may be subjected to any degree of constraint. Displacement components $u_r,\;u_{\theta},\;and\;u_z$ in the radial, circumferential, and axial directions, respectively, are taken to be sinusoidal in time, periodic in ${\theta}$, and algebraic polynomials in the r and z directions. Potential (strain) and kinetic energies of the paraboloidal shells of revolution are formulated, and the Ritz method is used to solve the eigenvalue problem, thus yielding upper bound values of the frequencies by minimizing the frequencies. As the degree of the polynomials is increased, frequencies converge to the exact values. Convergence to four digit exactitude is demonstrated for the first five frequencies of the complete, shallow and deep paraboloidal shells of revolution with variable thickness. Numerical results are presented for a variety of paraboloidal shells having uniform or variable thickness, and being either shallow or deep. Frequencies for five solid paraboloids of different depth are also given. Comparisons are made between the frequencies from the present 3-D Ritz method and a 2-D thin shell theory.

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A New Strategy to Fabricate a Colloidal Array Templated $TiO_2$ Photoelectrode for Dye-sensitized Solar Cells

  • 이현정
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.8.1-8.1
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    • 2011
  • Nanocrystalline titanium dioxide ($TiO_2$) materials have been widely used as an electron collector in DSSC. This is required to have an extremely high porosity and surface area such that the dye can be sufficiently adsorbed and be electronically interconnected, resulting in the generation of a high photocurrent within cells. In particular, their geometrical structures and crystalline phase have been extensively investigated as important issues in improving its photovoltaic efficiency. In this study, we present a new strategy to fabricate a photoelectrode having a periodic structured $TiO_2$ film templated from 1D or 3D polystyrene (PS) microspheres array. Monodisperse PS spheres of various radiuses were used for colloidal array on FTO glasses and two types of photoelectrode structures with different $TiO_2$ materials were investigated respectively. One is the igloo-shaped electrode prepared by $TiO_2$ deposition by RF-sputtering onto 2D microsphere-templated substrates. At the interface between the film and substrate, there are voids formed by the decomposition of PS microspheres during the calcination step. These holes might be expected to play the predominant roles as scattering spherical voids to promote a light harvesting effect, a spacious structure for electrolytes with higher viscosity and effective paths for electron transfer. Additionally the nanocrystalline $TiO_2$ phase prepared by the RF-sputtering method was previously reported to improve the electron drift mobility within $TiO_2$ electrodes. This yields solar cells with a cell efficiency of 2.45% or more at AM 1.5 illumination, which is a very remarkable result, considering its $TiO_2$ electrode thickness (<2 ${\mu}m$). This study can be expanded to obtain higher cell efficiency by higher dye loading through the increase of surface area or multi-layered stacking. The other is the inverse opal photonic crystal electrode prepared by titania particles infusion within 3D colloidal arrays. To obtain the enlargement of ordered area and high quality of crystallinity, the synthesis of titania particles coated with a organic thin layer were applied instead of sol-gel process using the $TiO_2$ precursors. They were dispersed so well in most solvents without aggregates and infused successfully within colloidal array structures. This ordered mesoporous structure provides the large surface area leading to the enough adsorption of dye molecules and have an light harvesting effect due to the photonic band gap properties (back-and-forth reflection effects within structures). A major advantage of this colloidal array template method is that the pore size and its distribution within $TiO_2$ photoelectrodes are determined by those of latex beads, which can be controlled easily. These materials may have promising potentials for future applications of membrane, sensor and so on as well as solar cells.

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다중노광 나노구 리소그라피를 이용한 쌍-광자결정 어레이 제작 (Fabrication of Pair-Photonic Crystal Arrays using Multiple-Exposure Nanosphere Lithography)

  • 여종빈;한광민;이현용
    • 한국전기전자재료학회논문지
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    • 제23권3호
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    • pp.245-249
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    • 2010
  • Two dimensional(2D) pair-photonic crystals (pair-PCs) have been fabricated by a multiple-exposure nanosphere lithography (MENSL) method using the self-assembled nanospheres as lens-mask patterns and the collimated laser beam as a multiple-exposing source. The arrays of the 2D pair-PCs exhibited variable lattice structures and shape the control of rotating angle (${\Theta}$), tilting angle (${\gamma}$) and the exposure conditions. In addition, the base period or filling factor of pair-PCs as well as their shapes could be changed by experimental conditions and nanosphere size. A 1.18-${\mu}m$-thick resist was spincoated on Si substrate and the multiple exposure was carried out at change of ${\gamma}$ and ${\Theta}$. Images of prepared 2D pair-PCs were observed by SEM. We believe that the MENSL method is a suitable useful tool to realize the pair-periodic arrays of large area.

유사 평면변형률 유한요소를 사용한 실린더 문제의 해석 (Finite Element Analyses of Cylinder Problems Using Pseudo-General Plane Strain Elements(Planar Constraint))

  • 권영두;권현욱;신상목;이찬복
    • 한국해양공학회지
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    • 제17권5호
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    • pp.66-75
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    • 2003
  • Long cylinder, subjected to internal pressure, is important in the analysis and design of nuclear fuel rod structures. In many cases, long cylinder problems have been considered as a plane strain condition. However, strictly speaking, long cylinder problems are not plane strain problems, but rather a general plane strain (GPS) condition, which is a combination of a plane strain state and a uniform strain state. The magnitude of the uniform axial strain is required, in order to make the summation of the axial force zero. Although there has been the GPS element, this paper proposes a general technique to solve long cylinder problems, using several pseudo-general plane strain (PGPS) elements. The conventional GPS elements and PGPS elements employed are as follows: axisymmetric GPS element (GA3), axisymmetric PGPS element (PGA8/6), 2-D GPS element (GIO), 3-D PGPS element (PG20/16), and reduced PGPS elements (RPGA6, RPG20/16). In particular, PGPS elements (PGA8/6, PG20/16) can be applied in periodic structure problems. These finite elements are tested, using several kinds of examples, thereby confirming the validity of the proposed finite element models.

밴드 갭 현상을 이용한 소음, 진동 차단 (Noise and Vibration Reduction by using the Band Gap Phenomenon)

  • 김현실;김재승;강현주;김봉기;김상렬
    • 한국음향학회:학술대회논문집
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    • 한국음향학회 2000년도 하계학술발표대회 논문집 제19권 1호
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    • pp.287-290
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    • 2000
  • In periodic structures where two or more materials of different density and sound speeds are arranged, there exist stop bands, in which waves cannot propagate. In this paper noise and vibration reduction by using band gap phenomena is discussed. The general theoretical background is presented and experimental results for acoustic wave attenuation in 2D cylinder arrays are described.

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C-D 노즐을 고려한 초음속 제트 소음 해석 (An Analysis of Supersonic Jet Noise with a Converging-Diverging Nozzle)

  • 김용석;이덕주
    • 한국음향학회:학술대회논문집
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    • 한국음향학회 2001년도 추계학술발표대회 논문집 제20권 2호
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    • pp.389-392
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    • 2001
  • To investigate the generation mechanism of the shock-associated noise, an underexpanded supersonic jet from an axisymmetic nozzle is simulated under the conditions of the Nozzle exit Mach number of 2 and the exit pressure ratio of Pe/Pe =1.5. The present simulation is performed based on the high-order accuracy and high-resolution ENO (Essentially Non-Oscillatory) scheme to capture the time-dependent flow structure representing the sound source. It was found that the shock-associated noise is generated by the weak interaction between the downstream propagating large turbulence structures of the jet flow and the quasi-periodic shock cell structure during the one is passing through the other. The directivity of propagating waves to the upstream is clearly shown in the visualization of pressure field. It is shown that the present calculation of the centerline pressure distribution is in fare agreement with the experimental data at the location of first shock cell.

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Frictional Anisotropy of CVD Bi-Layer Graphene Correlated with Surface Corrugated Structures

  • Park, Seonha;Choi, Mingi;Kim, Seokjun;Kim, Songkil
    • Tribology and Lubricants
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    • 제38권6호
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    • pp.235-240
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    • 2022
  • Atomically-thin 2D nanomaterials can be easily deformed and have surface corrugations which can influence the frictional characteristics of the 2D nanomaterials. Chemical vapor deposition (CVD) graphene can be grown in a wafer scale, which is suitable as a large-area surface coating film. The CVD growth involves cooling process to room temperature, and the thermal expansion coefficients mismatch between graphene and the metallic substrate induces a compressive strain in graphene, resulting in the surface corrugations such as wrinkles and atomic ripples. Such corrugations can induce the friction anisotropy of graphene, and therefore, accurate imaging of the surface corrugation is significant for better understanding about the friction anisotropy of CVD graphene. In this work, the combinatorial analysis using friction force microscopy (FFM) and transverse shear microscopy (TSM) was implemented to unveil the friction anisotropy of CVD bi-layer graphene. The periodic friction anisotropy of the wrinkles was measured following a sinusoidal curve depending on the angles between the wrinkles and the scanning tip, and the two domains were observed to have the different friction signals due to the different directions of the atomic ripples, which was confirmed by the high-resolution FFM and TSM imaging. In addition, we revealed that the atomic ripples can be easily suppressed by ironing the surface during AFM scans with an appropriate normal force. This work demonstrates that the friction anisotropy of CVD bilayer graphene is well-correlated with the corrugated structures and the local friction anisotropy induced by the atomic ripples can be controllably removed by simple AFM scans.

Synthesis and Characterization of Cu2+-Perfluorophthalocyanine Incorporated SBA15

  • Oh, Mi-Ok;Park, Sung Soo;Ha, Chang-Sik
    • 접착 및 계면
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    • 제7권3호
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    • pp.10-15
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    • 2006
  • After anchoring 3-(2-aminoethylamino)propyltriethoxysilane (APTES) onto the surfaces of the channels within ordered mesoporous silica, SBA-15, we dispersed $Cu^{2+}$-perfluorophthalocyanine into the modified SBA-15 channels. From small-angle X-ray scattering (SAXS) patterns and transmission electron microscopy (TEM) images, we confirmed that both the calcined and $Cu^{2+}$-perfluorophthalocyanine-incorporated SBA-15 samples possessed ordered periodic structures and hexagonal symmetry lattices (p6mm). The value of the $d_{100}$ spacing was decreased after the incorporation of $Cu^{2+}$-perfluorophthalocyanine into the modified SBA-15 channels. We used FTIR and UV-Vis spectroscopy and thermogravimetric analysis (TGA) to characterize both the modified SBA-15 and the $Cu^{2+}$-perfluorophthalocyanine-incorporated SBA-15 samples. From scanning electron microscopy (SEM) images and $N_2$ sorption measurements, we found that the $Cu^{2+}$-perfluorophthalocyanine units were incorporated within the modified SBA-15 channels, rather than on the external surfaces of the modified SBA-15 channels.

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플렉시블 무선통신소자 응용을 위한 PES 박막상의 Fishbone 형태의 전송선로에 대한 RF 특성연구 (A study on RF characteristics of fishbone-type transmission line on PES substrate for application to flexible wireless communication device)

  • 윤영
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권3호
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    • pp.302-311
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    • 2014
  • 본 연구에서는 소형화된 투명 플렉시블 무선통신소자 구현을 위해, 주기적 구조를 가지는 fishbone 형태의 전송선로를 PES (polyether sulfone) 박막상에 제작하였으며, 이에 관한 RF 특성을 고찰하였다. 그 결과에 의하면, PES 박막상에 제작된 fishbone 형태의 전송선로는 종래의 코프레너선로에 비해 단파장특성을 보여주었으며, 구체적으로 50 GHz에서 선로파장은 2.23 mm으로, 종래의 코프레너 선로의 56.6%이다. 삽입손실 측정결과에 의하면 fishbone 형태의 전송선로는 50 GHz 까지의 주파수 범위에서 1.31 dB보다 낮은 저손실특성을 보여주었다. 대역폭 추출결과에 의하면, PES 박막상의 fishbone 형태의 전송선로는 통과대역이 608 GHz인 광대역 특성을 보였다. PES 박막상의 fishbone 형태의 전송선로의 특성임피던스는 기존의 주기적 구조와는 달리 매우 적은 주파수 의존성을 나타내었으며, 이로 인해 광대역의 전송선로 및 광대역 분포형 수동소자에 이용될 수 있음을 알 수 있었다.