• 제목/요약/키워드: Stiffness prediction

검색결과 366건 처리시간 0.019초

분산분석을 이용한 스트랜드의 축강성 예측에 관한 연구 (A Study on the Axial Stiffness Prediction of Stand Using Analysis of Variance)

  • 박용대;양원호;허성필;성기득
    • 대한기계학회논문집A
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    • 제25권1호
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    • pp.127-134
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    • 2001
  • Wire ropes are widely used in cable car, suspension bridge and elevator, etc. and composed of single or multi-layer strands. It is difficult to find out the characteristics of a strand or wire rope because of complicated geometry and contact condition. In this study, the axial stiffness is evaluated using finite element method and reliable finite element analysis model is presented, taking into consideration the convergence on the length. The axial stiffness predictive equation of a strand is developed using analysis of variance, which can be applicable for characterizing the relationship between load and displacement when the strand configuration is determined.

세브론 스프링의 강성 변화에 따른 철도차량의 동특성 예측 연구 (Prediction of Dynamic Characteristics of Railway Vehicle by Stiffness Variation of Chevron Rubber Spring)

  • 유원희;박준혁;박남철;구정서
    • 한국소음진동공학회논문집
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    • 제27권2호
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    • pp.162-167
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    • 2017
  • The chevron rubber spring is used for subway vehicle as a primary suspension. Generally, the primary suspension has an influence to the running performance and not so much effect on the ride comfort in railway vehicle. But the stiffness of chevron spring is harder and harder as time goes on because of rubber characteristics. Therefore the dynamic characteristics such as ride comfort and derailment coefficient should be reviewed according to the stiffness variation of chevron rubber spring. In this paper the effect of chevron rubber spring on dynamic characteristics was studied by considering multi-body dynamics of railway vehicle on one straight line and seven curved lines.

Graphic 방법을 이용한 암반의 경계조건에 따른 절리면 전단거동 예측 (Prediction for Shear Behavior of the Rock Joints with Boundary Conditions using the Graphic Method)

  • 김용준;이정학;송범;염형진
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2003년도 추계학술대회 논문집(II)
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    • pp.466-471
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    • 2003
  • The characteristics of a rock joint which influence the stability of rock mass structures, such as the cut slopes and the tunnels, are largely controlled by the conditions of the rock joint as well as its boundary conditions. Boundary conditions can be represented by assuming that the deformability(or stiffness) of the rock mass surrounding the joints is modelled by a spring with stiffness. A new direct shear apparatus is developed in this study, which adapts a servo control system using PID algorithm. This apparatus can be used to investigate the various aspects of shear characteristics of the rock joints at conditions of constant normal stress and constant normal stiffness and so on. It is possible that the behavior under the constant normal stiffness condition can be predicted by the normalized graphic method with results obtained from the tests in the constant normal stress condition.

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비대칭 축 강성을 가지는 발전기 회전자의 2X 진동 예측 (Prediction of 2X Vibration of a Generator Rotor with Asymmetric Shaft Stiffness)

  • 박철현;김영춘;조경구;양보석
    • 동력기계공학회지
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    • 제11권1호
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    • pp.16-19
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    • 2007
  • The large generator rotor used in fossil power plant has the possibility of high 2X vibration due to asymmetric shaft stiffness. The generator rotor is machined into pole faces to reduce stiffness difference and then is tested through 2X vibration measurement when the balancing works are performed in the balancing shop. However, there are many cases of large difference values between 2X vibration in the balancing shop and 2X vibration in site. This paper presents a new method to estimate 2X vibration in site with more accuracy and applied for the retrofit of a fossil 400 MW class deteriorated generator. It shows that the new generator rotor is manufactured with a good 2X vibration characteristics and is operated in a low 2X vibration level although the generator rotor has high 2X vibration in the balancing shop.

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횡하중에 의한 고층건물의 비틀림 거동분석 (Prediction of Torsional Behavior for High-Rise Building Structures under Lateral Load)

  • 서현주
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 1999년도 춘계 학술발표회 논문집 Proceedings of EESK Conference-Spring
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    • pp.151-160
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    • 1999
  • It is recommended to have symmetric plan and elevation in structural design of hight-rise building structures to reduce torsional response of the structures. However it is not always allowed to do so due to architectural purposes. in many cases high-rise buildings are asymmetric. The purpose of this study is to predict the torsional behavior of high-rise building structures with asymmetric plan. Equivalent lateral stiffness and deformation shape factor are used for prediction of torsional response of high-rise buildings. Overall torsion of a structure is estimated by equivalent lateral stiffness and torsion of each floor is estimated by deformation factor in each 2-D lateral force resisting elements.

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공작기계 베어링 결합부의 전산 모델링 (Computational Modeling of the Bearing Coupling Section of Machine Tools)

  • 김현명;서재우;박형욱
    • 한국정밀공학회지
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    • 제29권10호
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    • pp.1050-1055
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    • 2012
  • The bearing coupling section of machine tools is the most important factor to determine their static/dynamic stiffness. To ensure the proper performance of machine tools, the static/dynamic stiffness of the rotating system has to be predicted on the design stage. Various parameters of the bearing coupling section, such as the spring element, node number and preload influence the characteristics of rotating systems. This study focuses on the prediction of the static and dynamic stiffness of the rotating system with the bearing coupling section using the finite element (FE) model. MATRIX 27 in ANSYS has been adopted to describe the bearing coupling section of machine tools because the MATRIX 27 can describe the bearing coupling section close to the real object and is applicable to various machine tools. The FE model of the bearing couple section which has the sixteen node using MATRIX 27 was constructed. Comparisons between finite element method (FEM) predictions and experimental results were performed in terms of the static and dynamic stiffness.

지중매설 연성관의 관강성 추정 (Pipe Stiffness Prediction of Buried Flexible Pipes)

  • 박준석;김선희;김응호
    • 상하수도학회지
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    • 제26권1호
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    • pp.13-20
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    • 2012
  • In this paper, we present the result of an investigation pertaining to the pipe stiffness of buried flexible pipes. Pipe stiffness (PS) formula for the parallel plate loading condition is derived based on the elasticity theory. Vertical and horizontal displacements are also derived. Vertical deflection is always larger than the horizontal deflection because some of energy due to overburden load is stored in the pipe but the difference is negligibly small. In the study, mechanical properties of the flexible pipes produced in the domestic manufacturer are tested and the results are reported in this paper. In addition, pipe stiffness is determined by the parallel plate loading tests and the finite element analysis. The difference between test and analysis is less than 14% although there are significant variations in the mechanical properties of the pipe material. Therefore, it was found that the finite element analysis can be used to predict the pipe stiffness instead of conducting parallel plate loading test.

동특성변화에 따른 구조물의 변경된 설계파라미터 예측 (Prediction of Structural Modified Design Parameter due to the Change of Dynamic Characteristic)

  • 이정윤
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 춘계학술대회 논문집
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    • pp.191-196
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    • 2004
  • This study proposed the analysis of mass position detection and modified stiffness due to the change of the mass and stiffness of structure by using the original and modified dynamic characteristics. The method is applied to examples of a cantilever and 3 degree of freedom by modifying the mass. The predicted detection of mass positions and magnitudes are in good agrement with these from the structural reanalysis using the modified mass.

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Seismic performance assessment of steel reinforced concrete members accounting for double pivot stiffness degradation

  • Juang, Jia-Lin;Hsu, Hsieh-Lung
    • Steel and Composite Structures
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    • 제8권6호
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    • pp.441-455
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    • 2008
  • This paper presents an effective hysteretic model for the prediction and evaluation of steel reinforced concrete member seismic performance. This model adopts the load-deformation relationship acquired from monotonic load tests and incorporates the double-pivot behavior of composite members subjected to cyclic loads. Deterioration in member stiffness was accounted in the analytical model. The composite member performance assessment control parameters were calibrated from the test results. Comparisons between the cyclic load test results and analytical model validated the proposed method's effectiveness.

공간적으로 보강된 복합재료의 강도예측 (Strength Prediction of Spatially Reinforced Composites)

  • 유재석;장영순;이상의;김천곤
    • Composites Research
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    • 제17권5호
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    • pp.39-46
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    • 2004
  • 본 연구에서는 공간적으로 보강된 복합재(SRC)의 강도를 예측하였다. 각 방향의 라드(rod)와 라드의 체적에 비례하는 기지의 강성으로 표현되는 구조요소(structural element)를 정의하고, 이 구조요소에 파손판단식을 적용하여 SRC의 강도를 예측하였다. 라드의 파손판단식의 경우는 최대파손변형률을, 기지의 경우는 수정된 Tsai-Wu 파손판단식을 각기 적용하였다. 또한 SRC의 강도를 예측하기 위해서 라드와 SRC의 물성치를 측정하였다. 측정된 물성치는 라드의 인장 파손변형률, 3D SRC의 압축 파손변형률, $45^{\cir}$ 회전된 방향에서의 인장 및 압축 강도와 전단강도들이다. 3D/4D SRC의 강도분포는 각 SRC의 라드방향에서 크게 나타나고 라드에서 벗어날수록 작은 강도 값을 보였다. 강도의 전체분포를 보다 빠르게 계산하기 위해서 하중증분을 유동적으로 사용하였고, 하중이력을 구할 때는 균일한 하중이력을 사용하였다. 3D SRC의 라드방향 압축실험결과 해석의 비교에서 초기 기울기는 서로 잘 일치하였고, 강도값은 18% 정도의 차이를 보였다.