• 제목/요약/키워드: nonlinear deformation characteristics

검색결과 163건 처리시간 0.026초

진동 평판 위 액적의 형상 진동 변화 및 모드 특성 (Shape Oscillation and Mode Characteristic of Droplet on Vibrating Flat Surface)

  • 신영섭;임희창
    • 대한기계학회논문집B
    • /
    • 제37권5호
    • /
    • pp.489-494
    • /
    • 2013
  • 본 연구는 주기적인 강제 진동이 가해지는 액적의 모드 특성을 실험적으로 이해하는 것을 목적으로 하고 있다. 액적의 공진 주파수 예측을 수행하여 이론 및 실험적 해석을 통해 두 접근방법의 타당성을 파악하였으며, 초고속카메라를 사용하여 액적의 다양한 변형 특성-모드 형상, 분리, 미소 액적의 발생, 그리고 비틀림의 특성을 관찰하였다. 이론 해석 및 실험결과와의 비교에 있어 공진 주파수 값의 차이가 약 15% 이하라는 것이 도출되었으며 이러한 차이의 발생 원인으로 접촉선 마찰, 비선형벽 고착, 실험의 불확실성 등에 큰 영향을 받는 것으로 판단된다. 접촉선이 고정되어있을 경우와 작은 진폭 조건 하에서 액적의 모양은 대칭형상을 가졌으며, 공진 주파수에서의 로브의 크기는 주변부 주파수에서의 로브 크기보다 더 크게 된다는 점을 확인하였다.

섬유혼합토의 동적물성변형특성 (Dynamic Deformation Characteristics of Fiber Reinforced Soils)

  • 정성용;김대일;박철수;목영진
    • 한국지반공학회:학술대회논문집
    • /
    • 한국지반공학회 2004년도 춘계학술발표회
    • /
    • pp.968-976
    • /
    • 2004
  • 본 논문에서는 여러 가지 입도의 사질토에 폴리프로필렌(polypropylene) 재질의 단섬유(staple fiber)를 중량비 0.3%로 혼합한 섬유혼합도의 거동특성과 보강효과를 평가하였다. 곡류계수는 일정하게 유지하고 균등계수를 변화시켜 성형한 공사체에 공진주시험을 수행하였다. 섬유혼합토의 최대전단탄성계수는 비혼합토에 비해 최대 30%까지 증가하였고, 비선형 영역에서의 전단탄성계수 감소량도 억제되었다. 섬유혼합토의 정규화 전단탄성계수 감소곡선이 Seed와 Idriss의 대표곡선 상한값 쪽으로 이동해, 비혼합토보다 얇은 밴드로 분포하여 섬유의 혼합이 흙의 강성 증가에 효과적임을 증명되었다.

  • PDF

목재를 이용한 육각형 공간 트러스 모델의 정적좌굴하중 특성 (Characteristics of Static Buckling Load of the Hexagonal Spatial Truss Models using Timber)

  • 하현주;손수덕;이승재
    • 한국공간구조학회논문집
    • /
    • 제22권3호
    • /
    • pp.25-32
    • /
    • 2022
  • In this paper, the instability of the domed spatial truss structure using wood and the characteristics of the buckling critical load were studied. Hexagonal space truss was adopted as the model to be analyzed, and two boundary conditions were considered. In the first case, the deformation of the inclined member is only considered, and in the second case, the deformation of the horizontal member is also considered. The materials of the model adopted in this paper are steel and timbers, and the considered timbers are spruce, pine, and larch. Here, the inelastic properties of the material are not considered. The instability of the target structure was observed through non-linear incremental analysis, and the buckling critical load was calculated through the singularities and eigenvalues of the tangential stiffness matrix at each incremental step. From the analysis results, in the example of the boundary condition considering only the inclined member, the critical buckling load was lower when using timber than when using steel, and the critical buckling load was determined according to the modulus of elasticity of timber. In the case of boundary conditions considering the effect of the horizontal member, using a mixture of steel and timber case had a lower buckling critical load than the steel case. But, the result showed that it was more effective in structural stability than only timber was used.

Numerical study on the rate-dependent behavior of geogrid reinforced sand retaining walls

  • Li, Fulin;Ma, Tianran;Yang, Yugui
    • Geomechanics and Engineering
    • /
    • 제25권3호
    • /
    • pp.195-205
    • /
    • 2021
  • Time effect on the deformation and strength characteristics of geogrid reinforced sand retaining wall has become an important issue in geotechnical and transportation engineering. Three physical model tests on geogrid reinforced sand retaining walls performed under various loading conditions were simulated to study their rate-dependent behaviors, using the presented nonlinear finite element method (FEM) analysis procedure. This FEM was based on the dynamic relaxation method and return mapping scheme, in which the combined effects of the rate-dependent behaviors of both the backfill soil and the geosynthetic reinforcement have been included. The rate-dependent behaviors of sands and geogrids should be attributed to the viscous property of materials, which can be described by the unified three-component elasto-viscoplastic constitutive model. By comparing the FEM simulations and the test results, it can be found that the present FEM was able to be successfully extended to the boundary value problems of geosynthetic reinforced soil retaining walls. The deformation and strength characteristics of the geogrid reinforced sand retaining walls can be well reproduced. Loading rate effect, the trends of jump in footing pressure upon the step-changes in the loading rate, occurred not only on sands and geogrids but also on geogrid reinforced sands retaining walls. The lateral earth pressure distributions against the back of retaining wall, the local tensile force in the geogrid arranged in the retaining wall and the local stresses beneath the footing under various loading conditions can also be predicted well in the FEM simulations.

아치형상의 하현재를 갖는 CFT 트러스 거더의 재료 비선형 해석 (Nonlinear Analysis of CFT Truss Girder with the Arch-shaped Lower Chord)

  • 송나영;정철헌;김영진
    • 대한토목학회논문집
    • /
    • 제29권6A호
    • /
    • pp.625-639
    • /
    • 2009
  • 본 연구에서는 f/L비가 다른 CFT 트러스 거더의 구조거동에 관한 실험 및 해석적 연구를 수행하기 위해서 2개의 실험체를 제작하였고, CFT 트러스 거더의 구조특성을 평가하기 위하여 휨실험을 수행하였다. ABAQUS에 의한 비선형 유한요소해석을 통해서 축력과 모멘트를 받는 CFT 부재의 비선형 재료모델을 비교분석하였다. CFT 부재의 구속 콘크리트 및 강재의 응력-변형률 모델은 많은 연구자들에 의해서 제시되어 왔다. 본 연구에서는 Mander, Sakino, Han, Susantha 및 Ellobody 등이 제안한 구속 콘크리트의 응력-변형률 모델을 적용하여 비선형해석을 수행하였고, 해석결과를 통해서 CFT 트러스 거더의 하중-처짐 관계, 하중-변형률 관계 등을 비교하였다. 하중-처짐 관계에서 Mander와 Susantha의 모델을 적용한 해석결과는 실험결과보다 약 12.0~13.8% 높은 하중을 예측하며, Sakino의 모델은 실험결과보다 약 7.6% 높은 하중을 예측하였다. Han과 Ellobody의 모델은 실험결과보다 약 0.2~1.2% 높은 하중을 예측하여 실험치와 가장 잘 맞는 결과를 보였다. 그러나 각 연구자의 응력-변형률 모델을 적용한 비선형 해석을 통해 산정된 하중-변형률 관계는 하중-처짐 관계와는 반대로 안전측의 결과를 보여 전반적으로 실험치보다 큰 수준의 변형률을 보였다.

필댐 제체 재료의 동적 물성치 평가 : II. 비선형 동적 변형특성 (Estimation of Dynamic Material Properties for Fill Dam : II. Nonlinear Deformation Characteristics)

  • 이세현;김동수;추연욱;권혁기
    • 한국지반공학회논문집
    • /
    • 제25권12호
    • /
    • pp.87-105
    • /
    • 2009
  • 정규화 전단탄성계수 감소곡선(G/$G_{max}-\log\gamma$)과 감쇠비 곡선(D-$\log\gamma$)으로 표현되는 비선형 동적 변형특성은 현장 전단파속도 주상도와 함께 필댐의 동적 내진해석시 중요한 입력 물성치로 사용된다. 본 논문에서는 필댐 심벽부와 사력부 각각에 대하여 합리적이고 경제적인 비선형 동적 변형특성 산정 방법을 제시하였다. 심벽부의 경우, 기존 여러 연구 결과로부터 심벽부 구성 재료의 조건을 만족하는 정규화 전단탄성계수 감소곡선 111개, 감쇠비 곡선 98개를 확보하여 3개의 구속응력 영역(0~100kPa, 100kPa~200kPa, 200kPa 초과)에 대한 대표 곡선 및 범위를 제안하였고, 2종의 기존 댐 심벽부 시료에 대한 공진주 시험 결과와 비교하여 신뢰성을 확인하였다. 사력부의 경우, 자갈 등 입자가 큰 사석 재료에 대해 대형 시험장비를 이용하여 시험을 수행한 국외 연구 결과로 부터 정규화 전단탄성계수 감소곡선 135개, 감쇠비 곡선 65개를 획득하였다. 정규화 전단탄성계수 감소곡선은 3개의 구속응력 영역(50kPa 이하, 50kPa~100kPa, 100kPa 초과)에 대해 대표 곡선을 제안하였고, 감쇠비 곡선은 구속응력에 관계없이 하나의 대표 곡선으로 제안하였다. 또한 현재 시공중인 B댐의 사석 재료에 대한 결과와 비교하여 대표 곡선 및 범위에 대한 신뢰성을 검증하였다.

Nonlinear finite element analysis of top- and seat-angle with double web-angle connections

  • Kishi, N.;Ahmed, A.;Yabuki, N.;Chen, W.F.
    • Structural Engineering and Mechanics
    • /
    • 제12권2호
    • /
    • pp.201-214
    • /
    • 2001
  • Four finite element (FE) models are examined to find the one that best estimates moment-rotation characteristics of top- and seat-angle with double web-angle connections. To efficiently simulate the real behavior of connections, finite element analyses are performed with following considerations: 1) all components of connection (beam, column, angles and bolts) are discretized by eight-node solid elements; 2) shapes of bolt shank, head, and nut are precisely taken into account in modeling; and 3) contact surface algorithm is applied as boundary condition. To improve accuracy in predicting moment-rotation behavior of a connection, bolt pretension is introduced before the corresponding connection moment being surcharged. The experimental results are used to investigate the applicability of FE method and to check the performance of three-parameter power model by making comparison among their moment-rotation behaviors and by assessment of deformation and stress distribution patterns at the final stage of loading. This research exposes two important features: (1) the FE method has tremendous potential for connection modeling for both monotonic and cyclic loading; and (2) the power model is able to predict moment-rotation characteristics of semi-rigid connections with acceptable accuracy.

Dynamic characteristics of elastic beams subjected to traffic loads

  • Tang, Chia-Chih;Wang, Yang-Cheng
    • Structural Engineering and Mechanics
    • /
    • 제13권2호
    • /
    • pp.211-230
    • /
    • 2002
  • The objective of this study is to investigate the dynamic behavior of elastic beams subjected to moving loads. Although analytical methods are available, they have limitations with respect to complicated structures. The use of computer technology in recent years is an effective way to solve the problem; thus using the latest technology this study establishes a finite-element solution procedure to investigate dynamic behaviors of a typical elastic beam having a set of constant geometric properties and various span lengths. Both the dead load of the beam and traffic load are applied in which the traffic load is considered a concentrated moving force with various traveling passage speeds on the beam. Dynamic behaviors including deflection, shear, and bending moment due to moving loads are obtained by both analytical and finite element methods; for simple structures, they have an excellent agreement. The numerical results show that based on analytical methods the fundamental mode is good enough to estimate the dynamic deflection along the beam, but is not sufficient to simulate the total response of the shear force or the bending moment. The linear dynamic behavior of the elastic beams subjected to multiple exciting loads can easily be found by linear superposition, and the geometric nonlinear results caused by large deformation and axial force of the beam are always underestimated with only a few exceptions which are indicated. In order to make the results useful, they have been nondimensionalized and presented in graphical form.

기하 및 재료 비선형을 고려한 셸 부재의 역학적 특성 (Mechanical Characteristics of Shell Members Considering the Geometrical and Material Nonlinearity)

  • 김기태;박범희;김다진;한상을
    • 한국공간구조학회논문집
    • /
    • 제18권4호
    • /
    • pp.31-39
    • /
    • 2018
  • This paper analyse the mechanical characteristics of geometrical and material nonlinearity behavior of cylindrical shell roofs subjected to a concentrated load. The shell elements were modeled using 'NISA2016' software as 3D general shell element and 3D composite shell element. The 3D shell element includes deformation due to bending, membrane, membrane-bending coupling and shear perpendicular to the grain effects is suited for modeling moderately thick or thin general shells and laminated composite shells. And The 3D composite shell element consists of a number of layers of perfectly bonded anisotropic and orthotropic materials. The purpose of this research is to analysis the load-deflection curves considering the combined geometric and material nonlinearity of cylindrical shells. In a shallowed cylindrical shell, snap-through curve can be found.

Effect of soil pile structure interaction on dynamic characteristics of jacket type offshore platforms

  • Asgarian, Behrouz;Shokrgozar, Hamed Rahman;Shahcheraghi, Davoud;Ghasemzadeh, Hasan
    • Coupled systems mechanics
    • /
    • 제1권4호
    • /
    • pp.381-395
    • /
    • 2012
  • Dynamic response of Pile Supported Structures is highly depended on Soil Pile Structure Interaction. In this paper, by comparison of experimental and numerical dynamic responses of a prototype jacket offshore platform for both hinge based and pile supported boundary conditions, effect of soil-pile-structure interaction on dynamic characteristics of this platform is studied. Jacket and deck of a prototype platform is installed on a hinge-based case first and then platform is installed on eight skirt piles embedded on continuum monolayer sand. Dynamic characteristics of platform in term of natural frequencies, mode shapes and modal damping are compared for both cases. Effects of adding and removing vertical bracing members in top bay of jacket on dynamic characteristics of platform for both boundary conditions are also studied. Numerical simulation of responses for the studied platform is also performed for both mentioned cases using capability of ABAQUS and SACS software. The 3D model using ABAQUS software is created using solid elements for soil and beam elements for jacket, deck and pile members. Mohr-Coulomb failure criterion and pile-soil interface element are used for considering nonlinear pile soil structure interaction. Simplified modeling of soil-pile-structure interaction effect is also studied using SACS software. It is observed that dynamic characteristics of the system changes significantly due to soil-pile-structure interaction. Meanwhile, both of complex and simplified (ABAQUS and SACS, respectively) models can predict this effect accurately for such platforms subjected to dynamic loading in small range of deformation.