• Title/Summary/Keyword: Multibody Mechanical System

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부분시스템 합성방법을 이용한 심해저 통합 채광시스템의 효율적인 유연 다물체 동역학 모델링 연구 (A Study on the Efficient Flexible Multibody Dynamics Modeling of Deep Seabed Integrated Mining System with Subsystem Synthesis Method)

  • 윤홍선;김성수;이창호;김형우
    • 대한기계학회논문집A
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    • 제39권12호
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    • pp.1213-1220
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    • 2015
  • 망간단괴를 채집하는 심해저 통합 채광시스템은 채광선, 수직양광관, 중간버퍼, 유연관, 채광로봇으로 구성되어 있다. 최근 심해저 통합 채광시스템 연구에서는 생산성을 극대화하기 위한 다수의 채광로봇으로 구성되는 새로운 다중로봇 통합 채광시스템의 개념이 소개되었다. 본 논문에서는 다중로봇 통합 채광시스템 해석의 효율성을 향상시키고, 다중로봇 시스템의 확장이 이하도록 부분시스템 합성방법이 적되었다. 또한 유연 다물체 동역학이 적된 부분구조로 나눔으로써 수직양광관과 유연관의 대변위가 고려되었다. 일반적인 해석방법과 부분시스템 합성방법의 산술 연산 횟수를 비교함으로써 통합 채광시스템의 부분시스템 합성방법의 이론적인 효율성 연구가 수행되었다.

다물체 동역학을 이용한 파력발전기의 동적거동 분석 (Dynamic Analysis of Wave Energy Generation System by Using Multibody Dynamics)

  • 장진석;손정현
    • 대한기계학회논문집A
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    • 제35권12호
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    • pp.1579-1584
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    • 2011
  • 본 논문에서는 파도의 에너지를 전기에너지로 변환하는 파력발전시스템에 대해 다루며, 발전기 및 12개의 암을 가진 가동물체형 파력발전기를 기구학적 구속조건을 이용하여 다물체 동역학 모델링 하였다. 새롭게 제안하는 파력발전기의 기어 메커니즘과 구속방정식 및 전달되는 힘요소에 대해 동역학적으로 모델링하였다. 파력은 시간영역에서 모리슨 방정식을 이용하여 수치적으로 계산하여 모델에 적용하였다. 시스템 거동해석을 위해 상용 다물체동역학 해석프로그램인 MSC/ADAMS를 이용하였다. 파력발전시스템의 파도에 대한 안정성을 검토하고 동적 거동 특성을 분석하였다. 하중에 따라 거동 특성을 분석한 결과 Yaw 운동은 상대적으로 적게 나타났으며 파고 1 m 이상일 경우 충분한 운동에너지가 발생함을 알 수 있다.

Evaluation of Structural Safety of Electro-Mechanical Linear Actuator and Load Simulator with Plate Spring

  • Kim, Dong-Hyeop;Kim, Young-Cheol;Kim, Sang-Woo;Lee, Jong Whan
    • 항공우주시스템공학회지
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    • 제14권6호
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    • pp.18-25
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    • 2020
  • This study investigated the structural behaviors and safety of an electro-mechanical linear actuator and a load simulator with a plate spring. The material and dimensions of the plate spring were determined by theoretically calculating the stress and torsional angle for the rating load of the actuator. Thereafter, a flexible multibody dynamics (FMBD) analysis was conducted on the linear actuator and load simulator to confirm the performance of the load simulator and acquire the reaction forces acting on the actuator and simulator. The structural safety of the linear actuator and load simulator was evaluated via finite element analysis using the aforementioned reaction forces. Consequently, the proposed linear actuator and load simulator were determined to be structurally safe; however, the safety factors for the actuation rod and the housing on the actuator were excessively high. Therefore, the weight and cost must be reduced to improve their design parameters in the future.

탄성 대변형 다물체동역학을 위한 슬라이딩조인트 개발 (The Development of a Sliding Joint for Very Flexible Multibody Dynamics)

  • 서종휘;정일호;수기야마;사바나;박태원
    • 대한기계학회논문집A
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    • 제29권8호
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    • pp.1123-1131
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    • 2005
  • In this paper, a formulation for a spatial sliding joint, which a general multibody can move along a very flexible cable, is derived using absolute nodal coordinates and non-generalized coordinate. The large deformable motion of a spatial cable is presented using absolute nodal coordinate formulation, which is based on the finite element procedures and the general continuum mechanics theory to represent the elastic forces. And the non-generalized coordinate, which is neither related to the inertia forces nor external forces, is used to describe an arbitrary position along the centerline of a very flexible cable. In the constraint equation for the sliding joint, since three constraint equations are imposed and one non-generalized coordinate is introduced, one constraint equation is systematically eliminated. Therefore, there are two independent Lagrange multipliers in the final system equations of motion associated with the sliding joint. The development of this sliding joint is important to analyze many mechanical systems such as pulley systems and pantograph/catenary systems for high speed-trains.

유연 다물체 동역학 해석을 이용한 4축 이적재 로봇의 주요 부품 선정 (Selecting Main Parts of a Four-Axis Palletizing Robot Through Dynamic Analysis of Rigid-Flexible Multibody Systems)

  • 박일환;고아라;설상석;홍대선
    • 한국기계가공학회지
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    • 제21권2호
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    • pp.54-63
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    • 2022
  • Among the various industrial robots, palletizing robots have received particular attention because of their higher productivity in accordance with technological progress. When designing a palletizing robot, the main components, such as the servo motors and reducers, should be properly selected to ensure its performance. In this study, a practical method for selecting the motors and reducers of a robot was proposed by performing the dynamic analysis of rigid-flexible multibody systems using ANSYS and ADAMS. In the first step, the links and frames were selected based on the structural analysis results obtained from ANSYS. Subsequently, a modal neutral file (MNF) with information on the flexible body was generated from the links and frames using modal analysis through ANSYS and APDL commands. Through a dynamic analysis of the flexible bodies, the specifications of the major components were finally determined by considering the required torque and power. To verify the effectiveness of the proposed method, the analysis results were compared with those of a rigid-body model. The comparison showed that rigid-flexible multibody dynamic analysis is much more useful than rigid body analysis, particularly for movements heavily influenced by gravity.

A recursive multibody model of a tracked vehicle and its interaction with flexible ground

  • Han, Ray P.S.;Sander, Brian S.;Mao, S.G.
    • Structural Engineering and Mechanics
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    • 제11권2호
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    • pp.133-149
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    • 2001
  • A high-fidelity model of a tracked vehicle traversing a flexible ground terrain with a varying profile is presented here. In this work, we employed a recursive formulation to model the track subsystem. This method yields a minimal set of coordinates and hence, computationally more efficient than conventional approaches. Also, in the vehicle subsystem, the undercarriage frame is assumed to be connected to the chassis by a revolute joint and a spring-damper unit. This increase in system mobility makes the model more realistic. To capture the vehicle-ground interaction, a Winkler-type foundation with springs-dampers is used. Simulation runs of the integrated tracked vehicle system for vibrations for four varying ground profiles are provided.

자기부상열차의 동적 모델링 연구 (A Study of Dynamic Modeling of a Magnetic Levitation Vehicle)

  • 한형석;조홍재;김동성
    • 한국정밀공학회지
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    • 제20권6호
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    • pp.160-166
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    • 2003
  • Interest in advanced vehicles results in correspondingly increased interest in modeling and simulation of the dynamic behavior of Maglev-type vehicle systems. DADS is a program especially suited for the analysis of multibody mechanical systems. This paper demonstrates the application of DADS to the dynamic modeling and simulation of such advanced vehicles. A brief description is made of the modeling requirements of magnetically levitated systems, along with a summary of some of the related capabilities of DADS. As a case study, an analysis of a vehicle based on the UTM01 system is presented. This paper shows that the presented modeling technique is applicable to the dynamic characteristics evaluation and control law design of Maglev- type vehicles.

유연한 보 구조물 위를 이동하는 구속 기계계의 동력학 해석(II) : 응용 (Dynamic Analysis of Constrained Mechanical System Moving on a Flexible Beam Structure(II) : Application)

  • 박찬종;박태원
    • 한국정밀공학회지
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    • 제17권11호
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    • pp.176-184
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    • 2000
  • Recently, it becomes a very important issue to consider the mechanical systems such as high-speed vehicle and railway train moving on a flexible beam structure. Using general approach proposed in the first part of this paper, it tis possible to predict planar motion of constrained mechanical system and elastic structure with various kinds of foundation supporting condition. Combined differential-algebraic equations of motion derived from both multibody dynamics theory and Finite Element Method can be analyzed numerically using generalized coordinate partitioning algorithm. To verify the validity of this approach, results from simply supported elastic beam subjected to a moving load are compared with exact solution from a reference. Finally, parameter study is conducted for a moving vehicle model on a simply supported 3-span bridge.

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Dynamic Analysis of a Moving Vehicle on Flexible beam Structure (II) : Application

  • Park, Tae-Won;Park, Chan-Jong
    • International Journal of Precision Engineering and Manufacturing
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    • 제3권4호
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    • pp.64-71
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    • 2002
  • Recently, mechanical systems such as a high-speed vehicles and railway trains moving on flexible beam structures have become a very important issue to consider. Using the general approach proposed in the first part of this paper, it is possible to predict motion of the constrained mechanical system and the elastic structure, with various kinds of foundation supporting conditions. Combined differential-algebraic equation of motion derived from both multibody dynamics theory and finite element method can be analyzed numerically using a generalized coordinate partitioning algorithm. To verify the validity of this approach, results from the simply supported elastic beam subjected to a moving load are compared with the exact solution from a reference. Finally, parametric study is conducted for a moving vehicle model on a simply supported 3-span bridge.

일정 일반속력으로 구동되는 다물체계의 정상상태의 평형해석 (Steady-state Equilibrium Analysis of a Multibody System Driven by Constant Generalized Speeds)

  • 최동환;박정훈;유홍희
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집B
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    • pp.465-470
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    • 2001
  • This paper presents an algorithm which seeks steady-state equilibrium positions of constrained multibody systems driven by constant generalized speeds. Since the relative coordinates are employed, the constraint equations at cut joints are incorporated into the formulation. The proposed algorithm leads to nonlinear equations that need to be solved iteratively. This algorithm should satisfy both types of conditions: the force equilibrium equations and the kinematic constraint equations. To verify the effectiveness of the proposed algorithm, two numerical examples are solved and the results are compared with those of a commercial program. This method, compared to the conventional method of using dynamic analysis, has the advantage of computational efficiency and stability.

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