• 제목/요약/키워드: Dynamic Material Model

검색결과 770건 처리시간 0.03초

탄성지반상에 놓인 철근콘크리트 축대칭 쉘의 정적 및 동적 해석 (III) -비선형 정적거동을 중심으로- (Static and Dynamic Analysis of Reinforced Concrete Axisymmetric Shell on the Elastic Foundation -With Application to an Static Behavior Analysis of Axisymmetric Shell-)

  • 조진구
    • 한국농공학회지
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    • 제39권3호
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    • pp.72-82
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    • 1997
  • In all inelastic deformations time rate effects are always present to some degree. Whether or not their exclusion has a significant influence on the prediction of the material behaviour depends upon several factors. In the study of structural components under static loading conditions at normal temperature it is accepted that time rate effects are generally not important. However metals, especially under high temperatures, exhibit simultaneously the phenomena of creep and viscoplasticity. In this study, elastoplastic and elasto-viscoplastic models include nonlinear geometrical effects were developed and several numerical examples are also included to verify the computer programming work developed here in this work. Comparisons of the calculated results, for the elasto-viscoplastic analysis of an internally pressurised thick cylinder under plane strain condition, have shown that the model yields excellent results. The results obtained from the numerical examples for an elasto-viscoplastic analysis of the Nuclear Reinforced Concrete Containment Structure(NRCCS) subjected to an incrementally applied internal pressure were summarized as follows : 1. The steady state hoop stress distribution along the shell layer of dome and dome wall junction part of NRCCS were linearly behave and the stress in interior surfaces was larger than that in exterior. 2.However in the upper part of the wall of NRCCS the steady state hoop stress in creased linearly from its inner to outer surfaces, being the exact reverse to the previous case of dome/dome-wall junction part. 3.At the lower part of wall of NRCCS, the linear change of steady state hoop stress along its wall layer began to disturb above a certain level of load increase.

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직무 스트레스가 중소기업에서 근무하는 작업자에게 미치는 영향 (The Effects of Work-Related Stress on Workers who are Engaged in the Medium Enterprises)

  • 박근상;여종구;김창한
    • 대한인간공학회지
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    • 제26권3호
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    • pp.35-43
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    • 2007
  • This study aims at providing some basic material to be made use of for establishing plans through which one can reduce job-related stress, through conducting a survey on the sources of stress and then distinguishing its symptoms by the sources. As the methods of the study, we conducted a questionnaire survey of some selected medium enterprises' employees in the National Capital region and analysed the results. The questionnaire was designed by using the dynamic stress model of Cooper and Eaker and consisted of 85 questions to examine the sources of stress, the characteristics of personalities, and symptoms by each type of stress. The total valid respondents were 392 persons indicating 65.3% of the response rate. For analysing the results, a rating scale was used, and the reliability and validity were tested by using Cronbach's alpha coefficient. As the result of the study, those workers in medium enterprises were found to be put under much stress by responsibility, physical environment factors and career development factors and so on. As physical symptoms of job-related stress, eye fatigue, stiffness in their shoulders, headache, worry or anxiety, and waist ache presented most in the respondents. In addition, as behavioral symptoms, chronic fatigue was most indicated. In organizational symptoms, dissatisfaction about the company and lack of self-motivation for the job performance were found to show most. Moreover, the results indicated that the closer personalities to those appearing in persons mostly of type A they had, the more they were put under intensive stress by the vagueness of their roles and responsibility among all the job characteristics.

식생뿌리의 전단강도 보강에 의한 사면안전율 해석 -잣나무 뿌리를 중심으로- (A Study on the Slope Stability Analysis by Shearing Reinforcement of Vegetation Roots -Focused on the Pinus Koraiensis Roots-)

  • 조주형;이종성
    • 한국조경학회지
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    • 제27권5호
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    • pp.80-93
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    • 2000
  • This study measured the shearing resistance of the roots of the Pinus Koraiensis by the tensile strength gained through their individual tensile test for the Root Reinforcement Model. On the basis of the shearing resistance value calculated through such a process the factor of safety(Fs) was comparatively presented by using the simplified Janbu Method in PCSTABL5M, the slop-analyzing software which had been developed in Purdue University of the U.S.A according to the shape of a slope and the type of soil. The results to have measured a stress and the factor of safety(Fs) by experiment are as follows. 1) The mean root diameter of the Pinus Koraiensis used for this experiment was 2.483mm and the mean tensile stress was calculated as 422.846(kgf/$\textrm{cm}^2$). In the strain ratio of material and the elastic modulus was measured 7.8%, 9,291.92(kgf/$\textrm{cm}^2$). 2) The shearing strength including the resistance of soil and root is expressed as Rt=C+Cr+$\sigma$.tan . ΔCr(kg/$\textrm{cm}^2$) of the shearing resistance calculated by estimating the areal ratio of roots at 10 is 0.253(kgf/$\textrm{cm}^2$). 3) As the result of making an analysis of the natural slope stability by the soil parameter, the factor of safety(Fs) was calculated at 1.795 in CL, and the stability analysis of the root reinforcement slope, Fs was calculated at 1.952. However, since a precise analysis of the controlled factors of the slope analyses are demanded for more accurate dynamic analyses, the future demands a study on this.

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수평으로 경사진 박스암거 위 콘크리트 포장 슬래브의 최적 줄눈위치 (Optimal Joint Position in Concrete Pavement Slab over Skewed Box Culvert)

  • 염우성;정호성;연우;손덕수;이재훈;정진훈
    • 한국도로학회논문집
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    • 제15권5호
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    • pp.47-55
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    • 2013
  • PURPOSES : The purpose of this study is to investigate the optimal joint positions which can minimize distresses of concrete pavement containing box culvert with horizontally skewed angles. METHODS : The concrete pavement containing the box culvert with different skewed angles and soil cover depths was modeled by 3 dimensional finite element method. The contact boundary condition was used between concrete and soil structures in addition to the nonlinear material property of soil in the finite element model. A dynamic analysis was performed by applying the self weight of pavement, negative temperature gradient of slab, and moving vehicle load simultaneously. RESULTS : In case of zero skewed angle ($0^{\circ}$), the maximum tensile stress of slab was the lowest when the joint was positioned directly over side of box culvert. In case there was a skewed angle, the maximum tensile stress of slab was the lowest when the joint passed the intersection between side of the box culvert and longitudinal centerline of slab. The magnitude of the maximum tensile stress converged to a constant value regardless the joint position from 3m of soil cover depth at all of the horizontally skewed angles. CONCLUSIONS : More reasonable and accurate design of the concrete pavement containing the box culvert can be possible based on the research results.

지진에 의한 영향을 고려한 비구조물 확률론적 내진응답모델링을 위한 향상된 지진강도 (Advanced Intensity Measures for Probabilistic Seismic Demand Model of Nonstructural Components Considering the Effects of Earthquake)

  • 허지은
    • 한국산학기술학회논문지
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    • 제18권4호
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    • pp.8-14
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    • 2017
  • 전기 장비와 같은 비구조적 요소는 다양한 제반 시설에서 적절한 기능을 수행하는 중요한 역할을 한다. 특정 시설에서 이러한 비구조적 요소 중 일부는 강한 지진 발생이 발생한다고 하더라고 계속적으로 작동해야 한다. 그러나 다양한 이유 중 지진 진동의 불확실성과 전기 장비와 같은 비구조적 요소의 다양성 때문에 지진 진동의 영향으로 인한 각 기계적 손상과 작동 상의 손상을 정의하는 것과 시스템 손상 확률을 결정하는 것은 어려운 일이다. 따라서 비구조적 요소의 특성과 지진의 변화를 고려한 전기 장비의 성능 평가를 위한, 실용이고 효과적인 확률 모델을 개발할 필요가 있다. 이 연구는 비구조적 요소의 동적 거동과 비구조적 요소를 구조물에 구속 시키는 구속 장치의 선형 거동 및 비선형 거동에 대한 이해를 향상 시킬 것이다. 또한, 이 연구는 폭넓고 새로운 지진 강도를 위한 구속된 비구조적 요소의 확률론적 내진 응답 모델을 생성할 것이다.

개량 Al-0.7Mn 합금의 미세조직, 고온 변형 거동 및 성형성 (Microstructure, High Temperature Deformation Behavior and Hot Formability of Modified Al-0.7Mn alloy)

  • 강태훈;황원구;신영철;최호준;노흥렬;이기안
    • 소성∙가공
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    • 제31권6호
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    • pp.365-375
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    • 2022
  • The microstructure and high-temperature plastic deformation behavior of the modified Al-0.7Mn alloy were investigated and compared with the conventional Al-0.3Mn (Al3102) alloy. α-Al (matrix) and Al6(Mn, Fe) phases were identified in both alloys. As a result of microstructure observation, both alloys showed equiaxed grains, and Al-0.7Mn alloy showed larger grain size and higher Al6(Mn, Fe) fraction than Al-0.3Mn alloy. High temperature compressive tests, the deformation temperatures of 410℃, 450℃, 490℃, 530℃ and strain rats of 10-2/s, 10-1/s, 1/s, 10/s, were conducted using Gleeble equipment. The flow stress values of Al-0.7Mn alloy were higher than that of Al-0.3Mn alloy at all strain rates and temperature conditions. Constitutive equations were presented using the flow stresses obtained from experimental results and the Zener-Hollomon parameter. In the true stress-true strain curves of the two alloys, the experimental and predicted values were in good agreement with each other. Based on the dynamic material model, eutectic deformation maps of Al-0.7Mn and Al-0.3Mn alloys were suggested, and the plastic instability region was presented. The modified Al-0.7Mn alloy showed a wider plastic instability region than that Al-0.3Mn alloy. Based on the process deformation maps, the MPE tube parts could be manufactured through the actual extrusion process using the suggested conditions.

유전 알고리즘을 활용한 완전파형역산 기법의 층상 반무한 지반 전단파 속도 추정 (Estimation of Shear-Wave Velocities of Layered Half-Space Using Full Waveform Inversion with Genetic Algorithm)

  • 이진호;이세혁
    • 한국전산구조공학회논문집
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    • 제34권4호
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    • pp.221-230
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    • 2021
  • 전역 최적화 문제의 해를 유전 알고리즘을 사용하여 얻어 완전파형역산을 수행하고 층상 반무한체의 물성치를 추정하는 기법을 제안한다. 조화 수직 하중이 작용하는 층상 반무한체의 동적 응답을 측정하고, 이를 추정 물성치를 사용하여 계산된 응답과 비교한다. 응답의 추정치는 mid-point integrated finite element와 perfectly matched discrete layer를 사용하여 구성된 thin-layer model로부터 얻는다. 전역 최적화 문제의 목적 함수는 응답의 관측치와 추정치의 차이에 대한 L2-norm으로 계산된다. 유전 알고리즘을 사용하여 전역 최적화 문제의 해를 구하여 완전파형역산을 수행한다. 제안된 기법을 기본 진동 모드 뿐만이 아니라 고차 진동 모드도 우세한 다양한 층상 반무한 매질에 적용하여, 측정치가 잡음을 포함하지 않는 경우와 포함하는 경우 모두에 대해서 제안된 완전파형역산 기법은 층상 반무한체의 재료 특성을 추정하는데 적합함을 확인할 수 있다.

탄소성 변형을 고려한 타이로드 고정 회전체의 동역학 해석 (Dynamic Analysis of Tie-rod-fastened Rotor Considering Elastoplastic Deformation)

  • 서동찬;김경희;이도훈;이보라;서준호
    • Tribology and Lubricants
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    • 제40권1호
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    • pp.8-16
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    • 2024
  • This study conducts numerical modeling and eigen-analysis of a rod-fastened rotor, which is mainly used in aircraft gas turbine engines in which multiple disks are in contact through curvic coupling. Nayak's theory is adopted to calculate surface parameters measured from the tooth profile of the curvic coupling gear. Surface parameters are important design parameters for predicting the stiffness between contact surfaces. Based on the calculated surface parameters, elastoplastic contact analysis is performed according to the interference between two surfaces based on the Greenwood-Williamson model. The equivalent bending stiffness is predicted based on the shape and elastoplastic contact stiffness of the curvic coupling. An equation of motion of the rod-fastened rotor, including the bending stiffness of the curvic coupling, is developed. Methods for applying the bending stiffness of a curvic coupling to the equation of motion and for modeling the equation of motion of a rotor that includes both inner and outer rotors are introduced. Rotordynamic analysis is performed through one-dimensional finite element analysis, and each element is modeled based on Timoshenko beam theory. Changes in bending stiffness and the resultant critical speed change in accordance with the rod fastening force are predicted, and the corresponding mode shapes are analyzed.

고속열차용 전기기계식 제동장치의 동력전달 기구물에 대한 구조해석 (Structural Analysis of Power Transmission Mechanism of Electro-Mechanical Brake Device for High Speed Train)

  • 오혁근;백승구;전창성
    • 한국산학기술학회논문지
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    • 제20권12호
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    • pp.237-246
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    • 2019
  • 전기기계식 제동장치(EMB : Electro Mechanical Brake)는 자동차 및 철도차량의 차세대 제동장치로서 현재 연구가 활발히 진행되고 있다. 현재의 고속열차용 제동장치는 공압 실린더를 이용하여 제동 압부력을 발생시키나 전기기계식 제동장치 (EMB)에서는 전기 모터 및 기어와의 조합을 통하여 압부력을 발생시킨다. 본 연구에서는 고압부력 발생이 가능한 EMB 구동 메커니즘을 제안하고, 해당 메커니즘을 만드는 기구장치 중 핵심부품인 기어 및 샤프트 부품들에 대한 구조 및 진동해석을 수행하였다. 한편 모델에 대한 동적 진동해석 결과 압부력이 가해진 상태에서 외부가진이 주어졌을 때 부재의 최대 응력이 항복강도 이내임이 확인되었다. 또한, 구조해석 결과 모터샤프트의 축 직경을 최대한 크게하는 설계가 강도 상 유리함을 확인하였으며, 기어와 편심샤프트를 고정하는 볼트에서 큰 전단응력이 발생할 수 있음을 확인하였다. 한편 해석모델의 메커니즘을 재현할 수 있는 시험장치를 제작하여 가장 취약한 부위인 고정 볼트부의 변형률을 구동 토크가 가해진 상태에서 측정하였다. 변형률 측정결과는 해석결과와 오차가 10% 이내로서, 해석모델의 정확도를 검증할 수 있었다.

선형 등가모델을 이용한 유연날개 구조해석 (Structural analysis of flexible wing using linear equivalent model)

  • 김성준;김동현;임주섭;이상욱;김태욱;김승호
    • 한국항공우주학회지
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    • 제43권8호
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    • pp.699-705
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    • 2015
  • 항공기가 적은 동력으로 장시간 체공을 하기 위해서는 높은 양항비(Lift Drag Ratio)와 구조경량화가 요구된다. 일반적으로 고고도 장기체공 비행기에는 가로세로비가 큰 날개가 적용된다. 또한 기체의 주요 구조물에 고강도, 고강성 탄소섬유복합재료를 사용하고, 날개의 표피(Skin)에 박막(Membrane) 소재인 얇은 마일러(Mylar)를 사용된다. 그 결과 날개 구조물이 다른 구조물에 비하여 유연해진다. 그리고 박막 소재인 얇은 마일러의 강성이 동적 안정성에 영향을 미치게 된다. 본 연구에서는 비선형 갭(Gap) 요소를 사용하여 마일러의 박막 특성을 모사하였다. 그리고 비선형해석 결과를 이용하여 등가강성을 갖는 선형 쉘(Shell) 요소로 등가모델링 하는 방법을 제시하였다. 선형 등가 쉘 모델은 멤브레인 요소법를 이용한 비선형해석 결과와 비교하여 결과의 타당성을 검증하였다. 제안된 선형등가 쉘 모델은 모드 해석에 적용하여 마일러의 기계적 물성이 고유진동수에 미치는 영향을 평가하였다.