• 제목/요약/키워드: FEM(Finite elements method)

검색결과 330건 처리시간 0.022초

3차원 균열을 갖는 구조물에 대한 건전성 평가(II) (Integrity Evaluation for 3D Cracked Structures(II))

  • 이준성
    • 한국산학기술학회논문지
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    • 제14권1호
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    • pp.1-6
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    • 2013
  • 3차원 균열은 항공기나 압력용기 계통에서 흔히 발견되는 결함중의 하나이다. 균열을 갖는 구조물에 대한 정확한 응력확대계수 해석과 균열성장속도는 파괴강도와 피로수명을 평가하는데 필요로 한다. 3차원 유한요소법은 구조물에 존재하는 표면균열의 응력확대계수를 구하는데 이용되어 진다. 기하모델, 즉 균열을 포함하는 솔리드모델을 정의한 후, 절점이 버켓법에 의해 생성되어 진다. 요소생성은 사변형 솔리드요소를 데라우니 삼각화 기술에 의해 생성하도록 하였다. 시스템의 정확도와 효용성을 체크하기 위해 내압을 받는 원통형용기에 균열이 존재하는 경우의 응력확대계수 해석을 수행하였다. 개발된 시스템을 이용한 해석결과는 ASME 식과 Raju-Newnam식과 비교하여 5%이내의 차이를 보였다.

윤하중에 의한 강바닥판 교면포장의 종방향균열 관련 수치해석법 개발 (Local Deformation Analysis of the Orthotropic Steel Bridge Deck Due to Wheel Loadings Using FSM and FEM)

  • 정진석;정명락;옥창권;이원태;김문영
    • 한국강구조학회 논문집
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    • 제28권4호
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    • pp.243-251
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    • 2016
  • 두께가 얇아짐에 따라 강바닥판은 윤하중의 작용으로 국부적으로 매우 큰 변형이 발생하고, 이것은 교면포장에 종방향으로 구조적인 균열을 야기 시킬 수 있다. 이 연구에서는 강바닥판의 윤하중 국부해석을 위하여 가로보의 휨 및 비틀림강성을 엄밀히 고려할 수 있는 평면쉘 스트립요소, 프리즘요소, 그리고 이 두요소를 연결하는 링크요소로 구성된 개선된 유한대판법을 제시하고자 한다. 이 방법의 효용성을 검증하기 위하여, 강판 플레이트 거더교의 일부를 해석예제로 선택하여 연직처짐 및 교축직각방향 변형율 결과를 쉘요소, 솔리드요소, 그리고 코히시브요소를 이용한 ABAQUS 해석결과와 비교, 검토하였다.

지형을 포함한 MT 탐사 자료의 2차원 모델링과 역산 (Two-dimensional Modeling and Inversion of MT Data Including Topography)

  • 이성곤;송윤호;김정호;정승환
    • 지구물리와물리탐사
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    • 제5권4호
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    • pp.291-298
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    • 2002
  • 본 연구에서는 지형을 포함한 2차원 MT 역산 알고리듬을 개발하였다. 역산 과정시 필요한 모델 반응 계산을 위하여 유한요소법을 이용하였다. 공기와 지표면의 경계를 기준으로 고도에 따라 각 요소들의 절점을 수직으로 이동시킴으로써 추가적인 계산시간의 증가없이 간편히 지형을 구현하였다. 역산에서는 공간적인 함수로서 라그랑지 곱수를 결정하는 알고리듬을 채택하여 역산의 분해능과 안정성을 높이고자 하였다. 수치모델 실험을 통하여 TM과 TE모드 자료의 지형효과를 고찰하였고, 수치 자료의 역산을 통하여 지형을 포함한 역산의 타당성을 살펴보았다. 또한 현장 자료에 대하여 적용하여 본 연구에서 개발된 지형을 포함한 MT자료 역산 알고리듬의 적용성을 확인하였다.

Assessment of effect of material properties on seismic response of a cantilever wall

  • Cakir, Tufan
    • Geomechanics and Engineering
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    • 제13권4호
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    • pp.601-619
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    • 2017
  • Cantilever retaining wall movements generally depend on the intensity and duration of ground motion, the response of the soil underlying the wall, the response of the backfill, the structural rigidity, and soil-structure interaction (SSI). This paper investigates the effect of material properties on seismic response of backfill-cantilever retaining wall-soil/foundation interaction system considering SSI. The material properties varied include the modulus of elasticity, Poisson's ratio, and mass density of the wall material. A series of nonlinear time history analyses with variation of material properties of the cantilever retaining wall are carried out by using the suggested finite element model (FEM). The backfill and foundation soil are modelled as an elastoplastic medium obeying the Drucker-Prager yield criterion, and the backfill-wall interface behavior is taken into consideration by using interface elements between the wall and soil to allow for de-bonding. The viscous boundary model is used in three dimensions to consider radiational effect of the seismic waves through the soil medium. In the seismic analyses, North-South component of the ground motion recorded during August 17, 1999 Kocaeli Earthquake in Yarimca station is used. Dynamic equations of motions are solved by using Newmark's direct step-by-step integration method. The response quantities incorporate the lateral displacements of the wall relative to the moving base and the stresses in the wall in all directions. The results show that while the modulus of elasticity has a considerable effect on seismic behavior of cantilever retaining wall, the Poisson's ratio and mass density of the wall material have negligible effects on seismic response.

펄스레이저에 의한 NAK80 금형강 표면연마의 해석적 연구 (Analytic Study on Pulsed-Laser Polishing on Surface of NAK80 Die Steel)

  • 김관우;김승환;조해용
    • 한국기계가공학회지
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    • 제14권6호
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    • pp.136-141
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    • 2015
  • Laser surface polishing is a polishing method for improving surface roughness using an integrated laser beam. Using a laser for surface polishing can improve the surface condition without physical contact or chemical action. Laser polishing has mainly been used to polish the surface of diamond or optical articles, such as lenses and glasses. Recently, diverse studies on laser polishing for metals have been conducted. The analytic study of laser surface polishing has been conducted with experimental trials for comparison, so that the proper conditions for laser polishing can be recommended. In this study, laser surface polishing was simulated in order to predict the heat-affected zone on the die steel depending on the power of the pulsed laser. The simulated results were verified by comparing them to those of the experimental trials. Through this study, therefore, the application of FEM to the selection of appropriate laser conditions could be possible.

스마트무인기 콘솔의 설계 및 진동.충격해석 (Design and Dynamic Response Analysis of Smart UAV Console System)

  • 권기한;김중욱;윤홍우;박형건
    • 한국항공우주학회지
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    • 제33권5호
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    • pp.87-92
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    • 2005
  • 본 논문에서는 스마트무인기 콘솔구조의 설계개념을 소개하고, 장비의 안전성을 평가하기 위하여 충격과 진동에 대한 국방 환경시험규격을 적용하여 수치해석을 통한 주파수 응답스펙트럼을 분석하였다. 콘솔의 설계개념은 형상설계와 공학설계로 크게 분류된다. 형상설계는 콘솔의 운용성을 높이기 위한 인체공학규격을 기초로 하며, 공학설계는 충격과 진동에 대한 내구성을 높이기 위한 설계이다. 수치해석은 유한요소법을 통해 수행되었으며, 해석결과 콘솔에 설치된 6개의 탄성스프링은 충격과 진동에 대하여 충분한 감쇠를 보임이 확인되었다.

액체질소 내에서 뇌 임펄스전압에 대한 압력별 GFRP의 절연파괴 특성 분석 (A Study on the Dielectric Characteristics of GFRP in LN2 under Lightning Impulse Voltage According to Pressure)

  • 홍종기;허정일;남석호;강형구
    • 전기학회논문지
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    • 제61권10호
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    • pp.1471-1476
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    • 2012
  • A study on the dielectric characteristics of the Glass Fiber Reinforced Plastic (GFRP) is important for designing a reliable high voltage superconducting machines such as transmission superconducting fault current limiters, superconducting cables, and superconducting transformers. In this paper, dielectric experiments of the GFRP under lightning impulse voltage are conducted in liquid nitrogen($LN_2$) according to various experimental conditions such as the thicknesses of the GFRP, the diameters of electrode systems and the pressures. The dielectric characteristics of the GFRP are analyzed by using a Finite Elements Method(FEM) according to various field utilization factors. It has been reported that the electrical insulation design of the GFRP would be conducted by considering the mean electric field intensity($E_{mean}$) distributed inside the GFRP. In this study, it is found that the dielectric performance of the GFRP could be explained by not only $E_{mean}$ but also the maximum electric field intensity ($E_{max}$). Finally, the empirical formulae of the GFRP to estimate an electrical breakdown voltage at sparkover under the lightning impulse condition are deduced. It is expected that the presented experimental results in this paper are helpful to design electrically reliable high voltage superconducting machines using the GFRP as an insulation material.

혼합모드(Mode I+II)구현을 위한 2축 피로시험 JIG 설계 (Design of 2 Axles Fatigue Test JIG for the Materialization of Mixed Mode (Mode I+II))

  • 최성대;정선환;김기만;김잠규;최명수;김우재
    • 한국산업융합학회 논문집
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    • 제11권2호
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    • pp.59-64
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    • 2008
  • Elements of a mechanical structure are getting from multi-axles stress. so fatigue characteristic experiment Shall execute in multi-axles stress state. it is very hard to apply according to forms of a testing machine and implementation. In this study, 2 axles fatigue testing machine did a design and Development. a new JIG developed to realize a mixed mode. a stress state in mixed mode of a specimen had each other comparison using the Finite element method to examine propriety of a new JIG.

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CAE를 이용한 나노 임프린트 스테이지의 동적 거동해석 (Dynamic Analysis of a Nano Imprinting Stage Using CAE)

  • 이강욱;이민규;이재우;임시형;신동훈;장시열;정재일;임홍재
    • 한국공작기계학회논문집
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    • 제16권5호
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    • pp.211-217
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    • 2007
  • A nano-imprinting stage has been widely used in various fields of nanotechnology. In this study, an analysis method of a nano-imprinting stage machine using FEM and flexible multi-body kinematics and dynamics has been presented. We have developed a virtual imprinting machine to evaluate the prototype design in the early design stage. The simulation using CAE for the imprinting machine is not only to analyze static and dynamic characteristics of the machine but also to determine design parameters of the components for the imprinting machine, such as dimensions and specifications of actuators and sensors. Structural components as the upper plate, the rotator, the shaft and the translator have been modeled with finite elements to analyze flexibility effects during the precision stage motion. In this paper flexible multi-body dynamic simulation is executed to support robust design of the precision stage mechanism. In addition, we made the 4-axis stage model to compare the dynamic behavior with that of 3-axis stage model.

MEMS 구조 압전 마이크로폰의 최적구조 설계 (Optimal Design of a MEMS-type Piezoelectric Microphone)

  • 권민형;라용호;전대우;이영진
    • 센서학회지
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    • 제27권4호
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    • pp.269-274
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    • 2018
  • High-sensitivity signal-to-noise ratio (SNR) microphones are essentially required for a broad range of automatic speech recognition applications. Piezoelectric microphones have several advantages compared to conventional capacitor microphones including high stiffness and high SNR. In this study, we designed a new piezoelectric membrane structure by using the finite elements method (FEM) and an optimization technique to improve the sensitivity of the transducer, which has a high-quality AlN piezoelectric thin film. The simulation demonstrated that the sensitivity critically depends on the inner radius of the top electrode, the outer radius of the membrane, and the thickness of the piezoelectric film in the microphone. The optimized piezoelectric transducer structure showed a much higher sensitivity than that of the conventional piezoelectric transducer structure. This study provides a visible path to realize micro-scale high-sensitivity piezoelectric microphones that have a simple manufacturing process, wide range of frequency and low DC bias voltage.