• 제목/요약/키워드: Transfer Dynamic Stiffness Coefficient

검색결과 20건 처리시간 0.023초

강성계수의 조합 및 전달에 의한 격자형 구조물의 자유진동 해석 (Free Vibration Analysis of Lattice Type Structures by the Combination and Transfer of Stiffness Coefficient)

  • 문덕홍;최명수;강화중;강현석
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1997년도 춘계학술대회논문집; 경주코오롱호텔; 22-23 May 1997
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    • pp.169-175
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    • 1997
  • Recently it is increased by degrees to produce complex and large lattice structures such as bridge, tower, crane, and space structures. In general, in order to analyse these structures we have used finite element method(FEM). In this method, however, it is necessary to use a large amount of computer memory and to take long computation time. For overcoming this problem, the Authors have developed the transfer dynamic stiffness coefficient method(TDSCM) which consists on the concept of the substructure synthesis method and transfer influence coefficient method. In this paper, the new free vibration analysis method for large type lattice structure is formulated by the TDSCM. And the results obtained by TDSCM are compared with those obtained by FEM, transfer matrix method and experiment. And it is confirmed for TDSCM to be the numerical high accuracy and high speed structure analysis method.

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유한요소-전달강성계수법을 이용한 평판 구조물의 강제진동해석 (Forced Vibration Analysis of Plate Structures Using Finite Element-Transfer Stiffness Coefficient Method)

  • 최명수
    • 한국소음진동공학회논문집
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    • 제13권2호
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    • pp.99-107
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    • 2003
  • The finite element method(FEM) is the most widely used and powerful method for structural analysis. In general, in order to analyze complex and large structures, we have used the FEM. However, it is necessary to use a large amount of computer memory and computation time for solving accurately by the FEM the dynamic problem of a system with many degree-of-freedom, because the FEM has to deal with very large matrices in this case. Therefore, it was very difficult to analyze the vibration for plate structures with a large number of degrees of freedom by the FEM on a personal computer. For overcoming this disadvantage of the FEM without the loss of the accuracy, the finite element-transfer stiffness coefficient method(FE-TSCM) was developed. The concept of the FE-TSCM is based on the combination of modeling technique in the FEM and the transfer technique in the transfer stiffness coefficient method(TSCM). The merit of the FE-TSCM is to take the advantages of both methods, that is, the convenience of the modeling in the FEM and the computation efficiency of the TSCM. In this paper, the forced vibration analysis algorithm of plate structures is formulated by the FE-TSCM. In order to illustrate the accuracy and the efficiency of the FE-TSCM, results of frequency response analysis for a rectangular plate, which was adopted as a computational model, were compared with those by the modal analysis method and the direct analysis method which are based on the FEM.

일반 평판의 면내 진동 해석 (In-Plane Vibration Analysis of General Plates)

  • 최명수;여동준;변정환;서정주;양정규
    • 동력기계공학회지
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    • 제11권4호
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    • pp.78-85
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    • 2007
  • In order to analyze accurately the vibration of a structure by using the finite element method (FEM), we have to model a analytical structure as a numerical model with many degrees-of-freedom. However, in this case, the FEM needs much computation time and storage. The authors developed the finite element-transfer stiffness coefficient method (FE-TSCM) for overcoming the drawback of the FEM. In this paper, the authors apply the FE-TSCM to the in-plane vibration analysis of general plates with various shapes. Two numerical examples, a rectangular plate and a triangular plate, are used to compare the results of the FE-TSCM and the FEM. Through the numerical calculation, we confirm that the FE-TSCM can be applied to the in-plane free or forced vibration analysis of the general plates with various shapes and is effective to in-plane vibration analysis of general plates.

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3 차원 직선형 구조물의 동적응답에 대한 감도해석 (A Study of Sensitivity Analysis on Dynamic Response of Three Dimensional Rectilinear Structure)

  • 문덕홍;강현석;최명수
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2000년도 춘계학술대회논문집
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    • pp.556-562
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    • 2000
  • This paper presents new sensitivity analysis algorithm for the dynamic response of three dimensional rectilinear type structure. This method is derived from a combination of the transfer stiffness coefficient method(TSCM) and the Newmark method. We developed dynamic response analysis algorithm by TSCM. This method has more safe computational precision and time than transfer matrix method(TMM). We defined new design variable and object function, and computated simple three dimensional computation model by TSCM. The presented analysis algorithm was validated by results of changing design variable.

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Development of Vibration Analysis Algorithm for Joined Conical-cylindrical Shell Structures using Transfer of Influence Coefficient

  • Yeo, Dong-Jun;Choi, Myung-Soo
    • 동력기계공학회지
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    • 제17권1호
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    • pp.50-57
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    • 2013
  • This describes the formulation for the free vibration of joined conical-cylindrical shells with uniform thickness using the transfer of influence coefficient. This method was developed based on successive transmission of dynamic influence coefficients, which were defined as the relationships between the displacement and the force vectors at arbitrary nodal circles of the system. The two edges of the shell having arbitrary boundary conditions are supported by several elastic springs with meridional/axial, circumferential, radial and rotational stiffness, respectively. The governing equations of vibration of a conical shell, including a cylindrical shell, are written as a coupled set of first order differential equations by using the transfer matrix of the shell. Once the transfer matrix of a single component has been determined, the entire structure matrix is obtained by the product of each component matrix and the joining matrix. The natural frequencies and the modes of vibration were calculated numerically for joined conical-cylindrical shells. The validity of the present method is demonstrated through simple numerical examples, and through comparison with the results of previous researchers.

기어박스로 구동되는 축-저널베어링계의 동적특성에 관한 연구 (Dynamic Characteristics of a Rotor-Journal Bearing System Driven by Gearboxes)

  • 박상규
    • 소음진동
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    • 제5권4호
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    • pp.565-575
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    • 1995
  • Gearboxes are often used in the petrochemical and electrical power plants to transmit mechanical power between two branches of a machinery train rotating at different speeds. When the gearboxes are connected with rotors supported by journal bearings, bearing loads vary in magnitude and direction with rotor speed and torque transmitted by the gearboxes. In this study, dynamic characteristics of the system which consists of gearboxes and a rotor supported by journal bearings are investigated analytically and experimentally by employing the polynomial transfer matrix method and modal analysis under different speeds and torque levels. Journal bearing loads due to the transmitted torque are claculated analytically and the stiffness and damping coefficient of the journal bearings are obtained using finite element method. Comparison of the analytical and experimental results shows that the cross coupled stiffness coefficients increase with increasing rotor speed, while the cross coupled damping coefficients decrease. This generates the oil whirl instability in the journal bearings. As the transmitted torque level goes up, the stiffness coefficients of the journal bearing and the first horizontal natural frequency increase. High levels of the transmitted torque produce high bearing stiffness since the contact loads of the mating gear teeth increase. The logarithmic decrement, which is a stability indicator, is shown to decrease with increasing speed and decreasing torque. Thus, at the low torque level, the system become unstable even at the low shaft speed.

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베어링 특성을 고려한 CNG 압축기의 동적 거동 및 동특성 해석 (Analysis of the Dynamic Behavior and Characteristics of the CNG Compressor Considering Bearing Characteristics)

  • 김태종
    • Tribology and Lubricants
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    • 제22권6호
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    • pp.342-349
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    • 2006
  • In this study, a dynamic behavior of rotor-bearing system used in CNG compressor has been investigated using the combined methodologies of finite elements and transfer matrices. The finite element is formulated including the field element for a shaft section and the point element for roller bearings. The Houbolt method is used to consider the time march for the integration of the system equations. The transient whirl response of rotating shaft supported on roller bearings is obtained, considering compression forces and unbalance forces at eccentric crank-pin part. And, the steady state displacements of the rotor are compared with a variation in stiffness coefficient of roller bearings. Results show that the loci of crankshaft considering unbalance forces and external compression forces are more severe in whirl motion than with only unbalance forces.

굽힘파 전파 특성을 이용한 레일체결장치의 구조 결함 진단 (Identification of Structural Defects in Rail Fastening Systems Using Flexural Wave Propagation)

  • 박정원;박준홍
    • 비파괴검사학회지
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    • 제34권1호
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    • pp.38-43
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    • 2014
  • 굽힘파 전파 특성을 이용하여 지지강성을 도출하고 이를 이용한 레일체결장치의 결함 검출 시험법을 제안하였다. 점탄성 패드로 지지되고 체결장치로 고정된 레일의 진동 응답은 주파수에 따라 지지단 동특성에 크게 영향을 받는다. 체결장치에 결함이 발생할 경우에는 구조적인 불연속성으로 인해 굽힘 파동의 전파 특성이 변화하게 된다. 이러한 변화를 감지하기 위해서 전달함수법을 이용해 주파수에 따라 변화하는 레일 지지단 동특성을 측정하였다. 연속 스프링으로 지지된 레일 응답으로부터 예측한 레일의 보존에너지를 이용해 결함에 대한 파동 전파의 민감도를 해석하였다. 민감도 해석 결과와 동적지지강성 변화를 측정하여 손상지수를 계산하고 결함 위치를 추정하였다.

고속 스핀들의 동적거동과 밸런싱 해석 (Analysis of Dynamic Behavior and Balancing of High Speed Spindle)

  • 구자함;권순구;김종순
    • 한국산학기술학회논문지
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    • 제18권1호
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    • pp.238-244
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    • 2017
  • 공작기계 응용에 있어서 고속 및 고효율 가공의 추세는 스핀들의 고속화를 지속적으로 요구하고 있다. 내장형 모터를 장착한 스핀들은 가공시스템의 구조를 단순하게 한다. 하지만 로터에는 불평형 질량에 의해 진동이 발생하며, 이를 제거하기 위한 밸런싱 작업은 필수적이다. 이 논문에서는 내장형 모터를 장착한 고속 스핀들의 동적거동을 해석하였다. 불평형 질량, 베어링 강성, 회전 속도의 변화에 따른 휘돌림 궤적을 해석하였고, 이를 저감시키는 방법을 모색하였다. 또한 Timoshenko 빔 요소를 적용하여 스핀들-베어링 시스템을 모델링하고, 영향 계수법을 적용하여 밸런싱 과정을 시뮬레이션 하였다. 스핀들의 경우, 불평형 하중이 작용할 때, 베어링 지지점에서 가장 작은 휘돌림 궤적이 나타났으며, 양단에서 가장 큰 휘돌림 궤적을 나타내었다. 스핀들의 회전속도가 증가함에 따라 스핀들 선단에서의 휘돌림 궤적도 증가하였다. 베어링의 강성이 커짐에 따라 휘돌림 궤적 또한 증가하였다. 밸런싱 전, 후의 휘돌림 궤적 반경은 최대 73%까지 감소함을 확인할 수 있었다. 이러한 연구 결과는 CNC 자동선반의 스핀들 고속화에 중요한 정보를 제공하고 있다.

차량하중에 의한 사장교의 동적거동에 관한 연구 (A Study on Dynamic Behaviour of Cable-Stayed Bridge by Vehicle Load)

  • 박춘혁;한재익
    • 대한토목학회논문집
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    • 제14권6호
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    • pp.1299-1308
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    • 1994
  • 본 연구는 사장교의 차량하중에 의한 동적거동을 파악하고자 수치해석상 비교적 간단한 일본의 풍리(豊里)(Toyosato)대교(大橋)의 자료를 근거로하여 수치해석 대상모델을 구조형식별로, 여러가지 설계변수-즉, (1) 경간비, (2) 중앙경간장과 주탑높이와의 비, (3) 거어더의 강성, (4) 주탑의 강성, (5) 케이블의 강성-을 변화시켜 수치해석을 수행하여 동적거동을 파악하고, 그 결과를 가지고 설계변수의 영향 및 충격계수의 변화에 대하여 비교 분석하였다. 이때 변위 및 단면력의 영향선을 구하기 위한 해석은 전달행렬법을 이용하였으며, 동적해석에 있어서는 평면구조계의 집중질량계로 모델을 가정하여 차량과 교량의 운동방정식을 유도한 후 모드중첩법을 사용하여 각 질점에 대한 변위 및 단면력의 동적시간이력을 구하였다.

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