• 제목/요약/키워드: Layered Structures

검색결과 503건 처리시간 0.025초

Flutter phenomenon in composite sandwich beams with flexible core under follower force

  • Saghavaz, Fahimeh Rashed;Payganeh, GHolamhassan;Fard, Keramat Malekzadeh
    • Steel and Composite Structures
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    • 제39권5호
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    • pp.615-630
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    • 2021
  • The main purpose of the present work was to study the dynamic instability of a three-layered, thick composite sandwich beam with the functionally graded (FG) flexible core subjected to an axial compressive follower force. Flutter instability of a sandwich cantilever beam was analyzed using the high-order theory of sandwich beams, for the first time. The governing equations in general for sandwich beams with an FG core were extracted and could be used for all types of sandwich beams with any types of face sheets and cores. A polynomial function is considered for the vertical distribution of the displacement field in the core layer along the thickness, based on the results of the first Frosting's higher order model. The governing partial differential equations and the equations of boundary conditions of the dynamic system are derived using Hamilton's principle. By applying the boundary conditions and numerical solution methods of squares quadrature, the beam flutter phenomenon is studied. In addition, the effects of different geometrical and material parameters on the flutter threshold were investigated. The results showed that the responses of the dynamic instability of the system were influenced by the follower force, the coefficients of FGs and the geometrical parameters like the core thickness. Comparison of the present results with the published results in the literature for the special case confirmed the accuracy of the proposed theory. The results showed that the follower force of the flutter phenomenon threshold for long beams tends to the corresponding results in the Timoshenko beam.

Crossover from weak anti-localization to weak localization in inkjet-printed Ti3C2Tx MXene thin-film

  • Jin, Mi-Jin;Um, Doo-Seung;Ogbeide, Osarenkhoe;Kim, Chang-Il;Yoo, Jung-Woo;Robinson, J. W. A.
    • Advances in nano research
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    • 제13권3호
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    • pp.259-267
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    • 2022
  • Two-dimensional (2D) transition metal carbides/nitrides or "MXenes" belong to a diverse-class of layered compounds, which offer composition- and electric-field-tunable electrical and physical properties. Although the majority of the MXenes, including Ti3C2Tx, are metallic, they typically show semiconductor-like behaviour in their percolated thin-film structure; this is also the most common structure used for fundamental studies and prototype device development of MXene. Magnetoconductance studies of thin-film MXenes are central to understanding their electronic transport properties and charge carrier dynamics, and also to evaluate their potential for spin-tronics and magnetoelectronics. Since MXenes are produced through solution processing, it is desirable to develop deposition strategies such as inkjet-printing to enable scale-up production with intricate structures/networks. Here, we systematically investigate the extrinsic negative magnetoconductance of inkjetprinted Ti3C2Tx MXene thin-films and report a crossover from weak anti-localization (WAL) to weak localization (WL) near 2.5K. The crossover from WAL to WL is consistent with strong, extrinsic, spin-orbit coupling, a key property for active control of spin currents in spin-orbitronic devices. From WAL/WL magnetoconductance analysis, we estimate that the printed MXene thin-film has a spin orbit coupling field of up to 0.84 T at 1.9 K. Our results and analyses offer a deeper understanding into microscopic charge carrier transport in Ti3C2Tx, revealing promising properties for printed, flexible, electronic and spinorbitronic device applications.

화학기상증착법을 통한 고품질 단층 MoSe2합성 및 반데르발스 수직이종 접합 구조 기반 고성능 트랜지스터 제작 (Chemical Vapor Deposition of High-Quality MoSe2 Monolayer and Its Application to van der Waals Heterostructure-Based High-Performance Field-Effect Transistors)

  • 임시헌;김선우;최선연;김현호
    • 접착 및 계면
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    • 제24권1호
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    • pp.36-40
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    • 2023
  • 반데르발스 물질이란 층간 결합이 약한 반데르발스 결합으로 이루어진 이차원 층상구조를 지닌 물질을 의미하며, 이러한 반데르발스 이차원 소재를 이용한 이종접합 구조 연구는 그래핀이 발견된 이후 꾸준히 연구되고 있다. 본 논문에서는 대기압 화학기상증착법을 통해 성장된 단층 단결정 MoSe2를 기반으로하는 반데르발스 이종접합 트랜지스터 소자에 대해 보고한다. 최적화된 공정조건에서 성장된 MoSe2는 원자수준의 결함이 존재하지 않는 것을 밝혔으며, 이를 이용한 트랜지스터 소자 또한 우수한 특성을 보인다는 것을 밝혀내었다.

Assessment of geometric nonlinear behavior in composite beams with partial shear interaction

  • Jie Wen;Abdul Hamid Sheikh;Md. Alhaz Uddin;A.B.M. Saiful Islam;Md. Arifuzzaman
    • Steel and Composite Structures
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    • 제48권6호
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    • pp.693-708
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    • 2023
  • Composite beams, two materials joined together, have become more common in structural engineering over the past few decades because they have better mechanical and structural properties. The shear connectors between their layers exhibit some deformability with finite stiffness, resulting in interfacial shear slip, a phenomenon known as partial shear interaction. Such a partial shear interaction contributes significantly to the composite beams. To provide precise predictions of the geometric nonlinear behavior shown by two-layered composite beams with interfacial shear slips, a robust analytical model has been developed that incorporates the influence of significant displacements. The application of a higher-order beam theory to the two material layers results in a third-order adjustment of the longitudinal displacement within each layer along the depth of the beam. Deformable shear connectors are employed at the interface to represent the partial shear interaction by means of a sequence of shear connectors that are evenly distributed throughout the beam's length. The Von-Karman theory of large deflection incorporates geometric nonlinearity into the governing equations, which are then solved analytically using the Navier solution technique. Suggested model exhibits a notable level of agreement with published findings, and numerical outputs derived from finite element (FE) model. Large displacement substantially reduces deflection, interfacial shear slip, and stress values. Geometric nonlinearity has a significant impact on beams with larger span-to-depth ratio and a greater degree of shear connector deformability. Potentially, the analytical model can accurately predict the geometric nonlinear responses of composite beams. The model has a high degree of generality, which might aid in the numerical solution of composite beams with varying configurations and shear criteria.

Development of exothermic system based on internet of things for preventing damages in winter season and evaluation of applicability to railway vehicles

  • Kim, Heonyoung;Kang, Donghoon;Joo, Chulmin
    • Smart Structures and Systems
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    • 제29권5호
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    • pp.653-660
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    • 2022
  • Gravel scattering that is generated during operation of high-speed railway vehicle is cause to damage of vehicle such as windows, axle protector and so on. Especially, those are frequently occurred in winter season when snow ice is generated easily. Above all, damage of vehicle windows has not only caused maintenance cost but also increased psychological anxiety of passengers. Various methods such as heating system using copper wire, heating jacket and heating air are applied to remove snow ice generated on the under-body of vehicle. However, the methods require much run-time and man power which can be low effectiveness of work. Therefore, this paper shows that large-area heating system was developed based on heating coat in order to fundamentally prevent snow ice damage on high-speed railway vehicle in the winter season. This system gives users high convenience because that can remotely control the heating system using IoT-based wireless communication. For evaluating the applicability to railroad sites, a field test on an actual high-speed railroad operation was conducted by applying these techniques to the brake cylinder of a high-speed railroad vehicle. From the results, it evaluated how input voltage and electric power per unit area of the heating specimen influences exothermic performance to draw the permit power condition for icing. In the future, if the system developed in the study is applied at the railroad site, it may be used as a technique for preventing all types of damages occurring due to snow ice in winter.

코드화 다공성 실리콘 나노입자의 개발 및 법과학적 응용 (The development of encoded porous silicon nanoparticles and application to forensic purpose)

  • 신여울;강상혁;이준배;팽기정
    • 분석과학
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    • 제22권3호
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    • pp.247-253
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    • 2009
  • 단결정의 실리콘 웨이퍼를 hydrofluoric acid와 ethyl alcohol이 혼합된 용액에 담궈 적정한 전류를 흘려주면 웨이퍼 표면에 수많은 pore를 형성하면서 에칭되어진다. 이러한 pore의 형태와 porosity는 전류 값과 에칭 시간 및 주기를 변화시켜 쉽게 조절할 수 있는데, 이렇게 제작된 다공성 실리콘은 수백 $m^2/cm^3$의 큰 표면적을 가지게 된다. 이때 sin 파와 같은 모양으로 시간대별 가해지는 전류 밀도를 다르게 해주어 pore안쪽의 모양을 변화시켜 주어 가시광선 영역에서 하나의 spectrum을 나타나게 되는 rugate 박막을 제작 한다. 본 연구에서는 법과학적인 목적으로 코드화된 다공성 실리콘의 rugate film을 이용하여 nano particle을 제작한 다음 이 입자들을 페인트에 혼합, 차량에 도포하고, 회수 후에 이를 확인할 수 있는지 조사하였다. 본 연구에서는 또 다양하게 가해지는 전류 값을 변경 또는 혼합하여 다공성 실리콘에 다양한 코드화를 시도하였으며, 사고 시 탈착한 페인트에서 다공성 실리콘 nano particle을 회수 하기위해 다공성 실리콘 안에 magnetite를 삽입하여 자석을 이용한 미량 나노입자 시료를 응집시켜 스펙트럼을 확인하였다.

Vibroacoustic response of thin power law indexed functionally graded plates

  • Baij Nath Singh;Vinayak Ranjan;R.N. Hota
    • Steel and Composite Structures
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    • 제50권3호
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    • pp.299-318
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    • 2024
  • The main objective of this paper is to compute the far-field acoustic radiation (sound radiation) of functionally graded plates (FGM) loaded by sinusoidally varying point load subjected to the arbitrary boundary condition is carried out. The governing differential equations for thin functionally graded plates (FGM) are derived using classical plate theory (CPT) and Rayleigh integral using the elemental radiator approach. Four cases, segregated on power-law index k=0,1,5,10, are studied. A novel approach is illustrated to compute sound fields of vibrating FGM plates using the physical neutral surface with an elemental radiator approach. The material properties of the FGM plate for all cases are calculated considering the power law indexes. An in-house MATLAB code is written to compute the natural frequencies, normal surface velocities, and sound radiation fields are analytically calculated using semi-analytical formulation. Ansys is used to validate the computed sound power level. The parametric effects of the power law index, modulus ratios, different constituent of FGM plates, boundary conditions, damping loss factor on the sound power level, and radiation efficiency is illustrated. This work is the benchmark approach that clearly explains how to calculate acoustic fields using a solid layered FGM model in ANSYS ACT. It shows that it is possible to asymptotically stabilize the structure by controlling the intermittent layers' stiffness. It is found that sound fields radiated by the elemental radiators approach in MATLAB, ANSYS and literatures are in good agreement. The main novelty of this research is that the FGM plate is analyzed in the low-frequency range, where the stiffness-controlled region governs the whole analysis. It is concluded that a clamped mono-ceramic FGM plate radiates a lesser sound power level and higher radiation efficiency than a mono-metallic or metal-rich FGM plate due to higher stiffness. It is found that change in damping loss factor does not affect the same constituents of FGM plates but has significant effects on the different constituents of FGM plates.

Seismic response analysis of buried oil and gas pipelines-soil coupled system under longitudinal multi-point excitation

  • Jianbo Dai;Zewen Zhao;Jing Ma;Zhaocheng Wang;Xiangxiang Ma
    • Earthquakes and Structures
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    • 제26권3호
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    • pp.239-249
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    • 2024
  • A new layered shear continuum model box was developed to address the dynamic response issues of buried oil and gas pipelines under multi-point excitation. Vibration table tests were conducted to investigate the seismic response of buried pipelines and the surrounding soil under longitudinal multi-point excitation. A nonlinear model of the pipeline-soil interaction was established using ABAQUS finite element software for simulation and analysis. The seismic response characteristics of the pipeline and soil under longitudinal multi-point excitation were clarified through vibration table tests and simulation. The results showed good consistency between the simulation and tests. The acceleration of the soil and pipeline exhibited amplification effects at loading levels of 0.1 g and 0.2 g, which significantly reduced at loading levels of 0.4 g and 0.62 g. The peak acceleration increased with increasing loading levels, and the peak frequency was in the low-frequency range of 0 Hz to 10 Hz. The amplitude in the frequency range of 10 Hz to 50 Hz showed a significant decreasing trend. The displacement peak curve of the soil increased with the loading level, and the nonlinearity of the soil resulted in a slower growth rate of displacement. The strain curve of the pipeline exhibited a parabolic shape, with the strain in the middle of the pipeline about 3 to 3.5 times larger than that on both sides. This study provides an effective theoretical basis and test basis for improving the seismic resistance of buried oil and gas pipelines.

고속도로 휴게소 환경개선을 위한 기능 증진 방안 연구 - 수도권 휴게소를 중심으로 - (A Study of the Functional Improvement for Comfortable Expressway Service Areas - Metropolitan Expressway Service Areas -)

  • 이원명;한봉호;김종엽;박석철
    • 한국조경학회지
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    • 제43권3호
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    • pp.63-76
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    • 2015
  • 본 연구는 수도권에 설치된 고속도로 휴게소 5개소를 대상으로 휴게소 공간 및 환경 특성, 식재현황을 조사 분석하여 휴게소 조경공간의 문제점과 개선방안을 제시하였다. 공간 및 환경 특성에서는 토지이용, 녹지 배치, 토지피복과 환경영향 요인으로 소음 현황, 분리녹지대 지형 구조를 조사 분석하였다. 식재현황에서는 식재개념, 식재구조, 식생경관을 조사 분석하였다. 토지이용 현황은 건물 등 시설지가 81.6%, 녹지는 18.4%이었으며, 녹지는 경관공간 5.4%, 완충공간 9.1%, 녹음공간 0.7%이었다. 녹지 배치는 분리녹지대, 건물 좌 우측, 진 출입부, 휴게소 건물 후면에 주로 배치되어 있었다. 토지피복 현황으로 평균 불투수포장율은 79.3%, 평균 투수포장율은 20.7%이었다. 소음 측정 결과는 소음원인 고속도로와 휴게소의 배치, 분리녹지대의 유형 및 규격에 따라 차이가 있었다. 식재개념 현황은 경관식재 6.7%, 기타녹지 3.4%, 완충식재 4.6%, 완충+경관식재 2.0%, 녹음식재 1.1%, 경관+녹음식재 0.5%로 조경공간 대부분이 감상을 위한 공간 위주로 조성되어 있었으며, 이용자의 휴식, 위락 공간 등 적극적 이용 가능 공간은 부족하였다. 식재구조는 교목층식재 52.2%, 관목층식재 11.8%, 교목층+관목층식재 9.4%로 대부분 단층구조이었다. 식생경관은 조사지점에 따라 식재밀도, 식재구조, 생육상태의 영향을 받고 있었다. 고속도로 휴게소 환경 개선 방안은 기반환경 개선, 공간기능 개선, 식재기능 개선으로 구분하여 제시하였다. 기반환경 개선은 휴게소 소음 개선을 위한 분리녹지대 기능 강화, 물순환 체계 개선, 비점오염 저감을 위한 시설물 설치를 제시하였다. 공간기능 개선은 휴게공간 접근성 향상을 위하여 건물 좌우측에 조성되는 녹지를 건물 전면에 배치하는 휴게공간 배치 개선과 주차장 내 녹지섬 조성을 통한 열섬현상 완화 및 보행자 안전 확보를 위한 식재 및 조성 방안을 제안하였다. 식재기능에서는 분리녹지대 완충기능 강화를 위하여 다층형 수림대 조성, 외곽녹지 완충기능 확보를 위한 상록교목+낙엽교목+관목층의 식재구조를 제시하였다. 건물 전면과 이용 선호도가 높은 건물 좌측공간에 녹음공간을 조성하고, 주제 설정을 통한 경관공간 식재방안을 제시하였다.

고성능 유기 전계효과 트랜지스터를 위한 유기친화 게이트 절연층 (Organo-Compatible Gate Dielectrics for High-performance Organic Field-effect Transistors)

  • 이민정;이슬이;유재석;장미;양회창
    • 공업화학
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    • 제24권3호
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    • pp.219-226
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    • 2013
  • 차세대 전자 디스플레이 관련 제품의 휴대편리성, 유연성, 경량화, 대형화 등의 요구조건을 확보할 수 있는 유기반도체 소재기반 소프트 일렉트로닉스에 많은 관심이 모아지고 있다. 소프트 일렉트로닉스의 응용분야로는 전자 신문, 전자 책, 스마트카드, RFID 태그, 태양전지, 휴대용 컴퓨터, 센서, 메모리 등이 있으며, 핵심소자는 유기 전계효과 트랜지스터(organic field-effect transistor, OFET)이다. OFET의 고성능화를 위해서는 유기반도체, 절연체, 전극 구성소재들이 최적화 구조를 형성하도록 적층되어야 한다. 필름형성화 과정에서 대부분의 유기반도체 소재는 결합력이 약한 van der Waals 결합으로 자기조립 결정구조를 형성하므로, 이들의 결정성 필름구조는 주위 환경(공정변수 및 기질특성)에 의해 크게 달라진다. 특히 기질의 표면 에너지(surface energy) 및 표면 거칠기(surface roughness)에 따라 유기반도체 박막 내 결정 구조 및 배향 등은 크게 달라져, OFET의 전기적 특성에 큰 차이를 미친다. 유기친화적 절연층 소재 및 표면개질화는 전하이동에 유리하도록 용액 및 증착공정 유기반도체 박막의 결정구조 및 배향을 유도시켜 OFET의 전기적 성능을 향상시킬 수 있다.