• 제목/요약/키워드: LAYERED STRUCTURE

검색결과 1,142건 처리시간 0.025초

수열 합성 및 박리에 의한 Mg/Al 층상 이중 수산화물의 종횡비 제어 (Hydrothermal Synthesis and Exfoliation of Mg/Al Layered Double Hydroxide with Tailored Aspect Ratio)

  • 황성환;김동현;김예원;정현성
    • 한국전기전자재료학회논문지
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    • 제30권12호
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    • pp.822-827
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    • 2017
  • Mg/Al layered double hydroxide with two-dimensional (2D) nanostructures was synthesized by a hydrothermal technique. The morphology and aspect ratio of $Mg_4Al_2(OH)_{14}3H_2O$ were controlled by the concentration and kinds of the hydrolysis agent, and temperature. The aspect ratio of $Mg_4Al_2(OH)_{14}3H_2O$ layered double hydroxides with the 2D hexagonal crystal structure was tailored from about 12.6 to about 45.7. The intercalated $CO{_3}^{2-}$ anions of the synthesized 2D $Mg_4Al_2(OH)_{14}3H_2O$ layered double hydroxides were exchanged to $NO_3{^-}$ anions. The bulk 2D $Mg_4Al_2(OH)_{14}3H_2O$ layered double hydroxides with the increased space between two layers due to the anion exchange were exfoliated in a formamide solution. The aspect ratio of the exfoliated 2D $Mg_4Al_2(OH)_{14}3H_2O$ layered double hydroxides increased to 570.3.

열충격하 적층체의 열탄성 구배기능 계면영역을 고려한 동일선상 복수균열 해석 (Collinear cracks in a layered structure with a thermoelastically graded interfacial zone under thermal shock)

  • 최형집;진태은;이강용
    • 대한기계학회논문집A
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    • 제22권4호
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    • pp.779-789
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    • 1998
  • In this paper, the thermal shock responses of collinear cracks in a layered medium are investigated based on the uncoupled, quasi-static plane thermoelasticity. The medium is modeled as a bonded structure composed of a surface layer and a semi-infinite substrate. Between these two dissimilar homogeneous constituents, a functionally graded interfacial zone exists with the nonhomogeneous features of continuously varying thermoelastic properties. Three cracks are assumed to be present in the layered medium, one in each one of the constituent materials, aligned collinearly normal to the nominal interfaces. A system of singular integral equations is solved, subjected to the forcing terms of equivalent transient thermal tractions acting on the locations of cracks via superposition. Main results presented are the transient thermal stress intensity factors to illustrate the parametric effects of various geometric and amterial combinations of the medium with the thermoelastically graded interfacial zone and the collinear cracks.

Double-Layered Frequency Selective Surface Superstrate Using Ring Slot and Dipole-Shaped Unit Cell Structure

  • Lee, Hong-Min;Kim, Yong-Jin
    • Journal of electromagnetic engineering and science
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    • 제10권3호
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    • pp.86-91
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    • 2010
  • In this paper, a double-layered frequency selective surface(FSS) superstrate was built and tested. The unit cell of the proposed FSS consists of a ring slot and a dipole-shaped structure and shows a complementary frequency response. Each unit cell is printed on two sides of a substrate. By using these double-layered structures, the first resonant frequency of the pass-band can be lowered. As a result, the size of the unit cell is minimized and the spacing between the other cells is reduced. The proposed FSS-dipole composite antenna is designed for the gain enhancement of wide-band code division multiple access(WCDMA) frequency bands(1.92~2.17 GHz) with a low quality factor(Q=0.17). To verify the gain enhancement performance of the FSS, an FSS-dipole composite antenna was created. Although the FSS layer enhances the gain of the primary radiation source of the dipole antenna, the FSS-dipole complex antenna cannot show a uniform gain over the entire desired frequency band. The experimental results show a gain enhancement of 3 dBi with an FSS superstrate in the WCDMA frequency band.

다층 압전 필름의 전극 패턴 최적화를 통한 2차원 구조물에서의 모달 변환기 구현 (Design of Modal Transducer in 2D Structure Using Multi-Layered PVDF Films Based on Electrode Pattern Optimization)

  • 유정규;김지철;김승조
    • 소음진동
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    • 제8권4호
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    • pp.632-642
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    • 1998
  • A method based on finite element discretization is developed for optimizing the polarization profile of PVDF film to create the modal transducer for specific modes. Using this concept, one can design the modal transducer in two-dimensional structure having arbitrary geometry and boundary conditions. As a practical means for implementing this polarization profile without repoling the PVDF film the polarization profile is approximated by optimizing electrode patterns, lamination angles, and poling directions of the multi-layered PVDF transducer. This corresponds to the approximation of a continuous function using discrete values. The electrode pattern of each PVDF layer is optimized by deciding the electrode of each finite element to be used or not. Genetic algorithm, suitable for discrete problems, is used as an optimization scheme. For the optimization of each layers lamination angle, the continuous lamination angle is encoded into discrete value using binary 5 bit string. For the experimental demonstration, a modal sensor for first and second modes of cantilevered composite plate is designed using two layers of PVDF films. The actuator is designed based on the criterion of minimizing the system energy in the control modes under a given initial condition. Experimental results show that the signals from residual modes are successfully reduced using the optimized multi-layered PVDF sensor. Using discrete LQG control law, the modal peaks of first and second modes are reduced in the amount of 12 dB and 4 dB, resepctively.

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Damped dynamic responses of a layered functionally graded thick beam under a pulse load

  • Asiri, Saeed A.;Akbas, Seref D.;Eltaher, Mohamed A.
    • Structural Engineering and Mechanics
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    • 제75권6호
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    • pp.713-722
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    • 2020
  • This article aims to illustrate the damped dynamic responses of layered functionally graded (FG) thick 2D beam under dynamic pulse sinusoidal load by using finite element method, for the first time. To investigate the response of thick beam accurately, two-dimensional plane stress problem is assumed to describe the constitutive behavior of thick beam structure. The material is distributed gradually through the thickness of each layer by generalized power law function. The Kelvin-Voigt viscoelastic constitutive model is exploited to include the material internal damping effect. The governing equations are obtained by using Lagrange's equations and solved by using finite element method with twelve -node 2D plane element. The dynamic equation of motion is solved numerically by Newmark implicit time integration procedure. Numerical studies are presented to illustrate stacking sequence and material gradation index on the displacement-time response of cantilever beam structure. It is found that, the number of waves increases by increasing the graduation distribution parameter. The presented mathematical model is useful in analysis and design of nuclear, marine, vehicle and aerospace structures those manufactured from functionally graded materials (FGM).

Optimal fiber volume fraction prediction of layered composite using frequency constraints- A hybrid FEM approach

  • Anil, K. Lalepalli;Panda, Subrata K.;Sharma, Nitin;Hirwani, Chetan K.;Topal, Umut
    • Computers and Concrete
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    • 제25권4호
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    • pp.303-310
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    • 2020
  • In this research, a hybrid mathematical model is derived using the higher-order polynomial kinematic model in association with soft computing technique for the prediction of best fiber volume fractions and the minimal mass of the layered composite structure. The optimal values are predicted further by taking the frequency parameter as the constraint and the projected values utilized for the computation of the eigenvalue and deflections. The optimal mass of the total layered composite and the corresponding optimal volume fractions are evaluated using the particle swarm optimization by constraining the arbitrary frequency value as mass/volume minimization functions. The degree of accuracy of the optimal model has been proven through the comparison study with published well-known research data. Further, the predicted values of volume fractions are incurred for the evaluation of the eigenvalue and the deflection data of the composite structure. To obtain the structural responses i.e. vibrational frequency and the central deflections the proposed higher-order polynomial FE model adopted. Finally, a series of numerical experimentations are carried out using the optimal fibre volume fraction for the prediction of the optimal frequencies and deflections including associated structural parameter.

CORNER SINGULARITY AT THE MULTIPLE JUNCTION OF THE ELECTRIC TRANSMISSION

  • Choe, Hi-Jun;Park, Kyong-Yop;Sohn, Ayoung
    • 대한수학회지
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    • 제42권6호
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    • pp.1311-1322
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    • 2005
  • We consider the several plane sector domains which are bonded together along common edges with vertex at the origin. Such domains appear in electric conducting problem with multi-layered heterogeneous media. Our aim is to give a structure theorem of the singularities of the electric field at the corner. Also, we provide a regularity theorem for the electric field.

구형 빔 패턴 형성을 위한 다층 원형 도체 배열 구조의 최적화 연구 (A Study on Optimization of a Multi-Layered Metallic Disk Array Structure for Shaping of Flat-Topped Element Patterns)

  • 엄순영;박한규
    • 한국전자파학회논문지
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    • 제14권10호
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    • pp.985-995
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    • 2003
  • 본 논문에서는 $\pm$20$^{\circ}$의 구형 빔 패턴 형성을 위한 삼차원 다층 원형 도체 배열 구조의 최적화 설계 변수들에 대하여 연구하였다. 원형 도파관 여기에 의한 다층 원형 도체 배열 구조의 각 방사 소자는 입력 원형 도파관, 임피이던스 정합용 원형 도파관, 방사 원형 도파관 그리고 그 위에 적층된 유한개의 원형 도체 배열층들로 구성되며, 각 방사 소자들은 원추형 빔 스캐닝에 적합한 정육각형 격자 배열 구조를 이룬다. 본 논문에서는 다층 원형 도체 배열 구조에 대한 해석 알고리듬을 제시하고, 이것을 프로그램 코드화하여 최적화 설계 변수 추출을 위한 다양한 설계 변수 변화에 대한 시뮬레이션을 수행하였다. 또한, 다층 원형 도체 배열 구조의 구형 빔 패턴 및 반사 계수에 대한 대역폭 특성을 살펴 보았으며, 그 결과 다층 원형 도체 배열 구조는 최소한 5.6 %의 주파수 대역폭내에서 $\pm$20$^{\circ}$의 양호한 구형 빔 패턴을 형성함을 알 수 있었다.

철을 이용한 전통 정련·단접 과정 적용 소재별 표면무늬 금속학적 비교 연구 (A Comparative Study on the Surface Patterns Applied to the Traditional Refining and Forge Welding Process Using Iron)

  • 오민지;조성모;조남철;한정욱
    • 보존과학회지
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    • 제35권5호
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    • pp.440-452
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    • 2019
  • 전통 제철 공정 중 단야공정에서 나타나는 다층구조 무늬의 선명도를 향상시키고자 재현실험을 통해 생산된 사철강(SI)과 탄소의 함량이 다른 3종류의 현대강인 경강(HS), 고탄소강(CS), 니켈탄소강(NiS)을 각각 단접한 소재 SIHS(사철강 + 경강), SICS(사철강 + 고탄소강), SINiS(사철강 + 니켈탄소강)을 대상으로 분석하였다. 사철강과 탄소의 함량이 다른 3종류의 현대강의 접합면에 대한 미세조직 관찰 결과, SINiS의 경우 다른 소재에 비해 단접면의 단접이 잘 이루어졌고 표면무늬 또한 두드러지게 관찰되었다. 결정립 크기는 소재별 큰 차이는 없었으나 경도는 SICS가 가장 높았다. 소재별 접합면에 대한 전자빔 미세분석법 측정 결과, SINiS의 경우 니켈과 탄소가 함유되어 표면무늬의 선명도가 다른 소재에 비해 높은 것으로 관찰된다. 이상의 결과를 통해 전통단접기술의 특징인 다층구조 소재에서 표현되는 표면무늬의 선명도를 높이기 위해서는 니켈이 함유된 탄소강이 가장 적합함을 확인할 수 있었다.