• Title/Summary/Keyword: 링크기구

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Effect of U-Joint Errors Analysis for a Cubic Parallel Device (육면형 병렬기구에서의 유니버설 조인트 오차의 영향)

  • Lim, Seung-Reung;Choi, Woo-Chun
    • Proceedings of the KSME Conference
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    • 2000.11a
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    • pp.789-794
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    • 2000
  • This study proposes an error analysis for a cubic parallel device. There are many sources of errors in the device. An error analysis is presented based on an error model formed from the relation between the universal joint error of the cubic parallel manipulator and the end effector accuracy. The analysis shows that the method can be used in evaluating the accuracy of a parallel device.

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Enhancement of 4 Bar Parallelogram Linkage for a Medical Bed (의료용 침대를 위한 평행 4절 링크의 개선)

  • Lee, Youngdae;Kim, Changyoung;Choi, Moonsoo
    • The Journal of the Convergence on Culture Technology
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    • v.6 no.1
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    • pp.515-520
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    • 2020
  • The design and actual implementation of the four-bar parallel link was studied in the paper. The parallel four-section link is widely used as a basic kinematic mechanism for transmitting the rotation of one axis to the rotational motion of the other axis. However, the parallel 4 link has a problem that phase reversal occurs at the turning point during the movement. In order to prevent the link reversal, it is known that a double parallelogram-type link is formed by attaching an additional phase reversal suppression link with an offset. However, as a result of the actual fabrication experiment, the movement is not smooth at the transition point. In order to solve this problem, in this study, a link for smooth movement is added in addition to a link that provides an offset to prevent phase reversal, so that the phase reversal does not occur at a specific point when the driven shaft rotates along the drive shaft. The test result confirms the validity of our suggestion.

Operational Characteristics of a Domestic Commercial Semi-automatic Vegetable Transplanter (상용 국산 반자동 채소 정식기의 작동 특성 분석)

  • Park, Jeong-Hyeon;Hwang, Seok-Joon;Nam, Ju-Seok
    • Journal of agriculture & life science
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    • v.52 no.6
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    • pp.127-138
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    • 2018
  • In this study, the operational characteristics of a domestic vegetable transplanter were investigated. The main functional components and power path of the tranplanter were analyzed. The link structure of transplanting device waskinematically analyzed, and 3D modeling and dynamic simulation were performed. Based on this analysis, the trajectory of the bottom end of the transplanting hopper was analyzed. Also, the plant spacing according to the engine speed and the shifting stage of transplanting transmission was analyzed and verified by field test. As main results of this study, the transplanting device is one degree of freedom(DOF) 4-bar link type mechanism which comprises 10 links and 13 rotating joints. The transplanting hopper plants seedlings in a vertical direction while maintaining a constant posture by the links of transplanting device. The power is transmitted to both the driving part and transplanting part from the engine, and the maximum and minimum plant spacing of the transplanting device were 428.97 mm and 261.20 mm.

A Study on the Microcoputer Aided Measuring Device for the Motion Analysis of 3-D Linkages (마이크로 컴퓨터를 이용한 3차원 연쇄기구 운동의 자동측정 및 운동해석 장치에 관한 연구)

  • 김호룡;홍지수
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.10 no.4
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    • pp.577-584
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    • 1986
  • 본 연구에서는 측정자가 시간과 노력을 소비하면서 3차원 연쇄기구의 공간운 동을 유추적으로 측정한 현재까지의 실험측정을 지양하고, 국내에서 구입 가능하고 염 가인 Apple II와 같은 같은 마이크로 컴퓨터 또는 마이크로프로세서를 이용, 3차원 연 쇄기구의 공간운동을 신속하고 정확하게 측정분석하는 자동 실험장치를 설계 제작한 다음, 이 장치를 일반 3차원 연쇄기구 모델에 적용 측정된 결과를 기호방정식을 이용 한 일반 연쇄기구 운동식의 이론 결과와 비교 검토하였다.

A Study on the Trip Time Sensitivity of MCCB Mechanism (배선용 차단기(MCCB) 개폐기구부의 트립시간 민감도에 관한 연구)

  • 엄위상;김길수;조현길;박진영
    • Proceedings of the KAIS Fall Conference
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    • 2000.10a
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    • pp.83-85
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    • 2000
  • 배선용 차단기의 개폐기구는 수동 조작력을 가동 접촉자에 전달하여 차단, 개폐의 동작을 행하는 것으로 Spring과 Link를 주체로 구성되어 있으며 기구부가 단락 차단 성능의 가장 큰 영향을 미친다. 제품 성능 개선을 위해 기구부를 변경하기 위해서는 많은 시행착오를 거치게 되는데 이 때 소요되는 시간과 비용을 줄이기 위해 동특성 해석이 널리 사용되고 있다. 본 논문에서는 제품의 동적 모델링을 위해 범용 동역학 해석 프로그램인 ADAMS(Automatic Dynamic Analysis of Mechanical System)을 이용하였고 설계 변경시 반복작업으로 인한 실패비용을 최소화하고 링크 지점의 최적값을 구하기 위해 민감도 해석과 최적화 기법을 도입하였다.

얀센 메커니즘 기반 Centroid와 Stability를 고려한Line tracing 로봇설계

  • Kim, Jong-Jin;Park, Dong-Mun
    • Proceeding of EDISON Challenge
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    • 2017.03a
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    • pp.574-578
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    • 2017
  • 본 연구는 4절 링크 이론(four-bar likage mechanism)과 얀센 메커니즘(Jansen mechanism)을 기반으로 다관절 보행로봇을 제작하고, 로봇의 움직임에 대하여 기구학적인 해석을 제시한다. 또한 라인 트레이싱(Line tracing) 방법을 활용한 자동주행 설계를 위해 아두이노 호환 보드와 적외선 센서 4개를 보행로봇에 부착하여 자동 주행 로봇을 제작하였다.

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Design of a 6-DOF Parallel Haptic Rand Controller Consisting of 5-Bar Linkages and Gimbal Mechanisms (5절링크와 짐벌기구로 구성된 병렬형 6자유도 햅틱 핸드컨트롤러의 설계)

  • Ryu, Dong-Seok;Sohn, Won-Sun;Song, Jae-Bok
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.27 no.1
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    • pp.18-25
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    • 2003
  • A haptic hand controller (HHC) operated by the user’s hand can receive information on position and orientation of the hand and display force and moment generated in the virtual environment to the hand. In this paper, a 3-DOF hand controller is first presented, in which all the actuators are mounted on the fixed base by combining a 5-bar linkage and a gimbal mechanism. The 6-DOF HHC is then designed by connecting these two 3-DOF devices through a handle which consists of a screw and nut. Analysis using performance index is carried out to determine the dimensions of the device. The HHC control system consists of the high-level controller for kinematic and static analysis and the low-level controller for position sensing and motor control. The HHC used as a user interface to control the mobile robot in the virtual environment is given as a simple application.

A Study on Designing Link Type Percussion Lock (링크식 격발기구 설계에 관한 연구)

  • Lee, Joon-Ho;Yeo, Woon-Joo;Choe, Eui-Jung
    • Journal of the Korea Institute of Military Science and Technology
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    • v.12 no.3
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    • pp.259-265
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    • 2009
  • In the traditional percussion locks of small arms, a firing pin is struck by a hammer rotating on a single center of rotation, which makes the percussion mechanism simple and reliable. In order to strike the firing pin by the hammer, however, the firing pin should be located within the radius of rotation of the hammer. As the distance between the striking point of the firing pin and the center of rotation of the hammer becomes longer, the radius of rotation of the hammer should also be increased, which results in the increase of the volume and weight of the small arms because the hammer needs the more space for its operation inside of the small arms. In this paper, a link type percussion lock was newly proposed in order to overcome the limitation of designing small arms when using traditional percussion locks, as mentioned above. The link type percussion lock was modeled by using multi-body dynamics software and designed to satisfy the requirements such as striking force level of the hammer exerting on the firing pin enough to detonate the percussion cap of ammunitions and the safety on the accidental drop. It was applied to the newly developed dual-barrel weapon system, in which the weight and overall length are important design factors, and verified by durability test and drop test on the ground.

Real-time direct kinematics of a double parallel robot arm (2단 평행기구 로봇 암의 실시간 순방향 기구학 해석)

  • Lee, Min-Ki;Park, Kun-Woo
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.21 no.1
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    • pp.144-153
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    • 1997
  • The determination of the direct kinematics of the parallel mechanism is a difficult problem but has to be solved for any practical use. This paper presents the efficient formulation of the direct kinematics for double parallel robot arm. The robot arm consists of two parallel mechanism, which generate positional and orientational motions, respectively. These motions are decoupled by a passive central axis which is composed of four revolute joints and one prismatic joint. For a set of given lengths of linear actuators, the direct kinematics will find the joint displacements of th central axis from geometric constraints in each parallel mechanism. Then the joint displacements will be converted into the position and the orientation of the end effector of the robot arm. The proposed formulation is decoupled and compacted so that it will be implemented as a real-time direct kinematics. With the proposed formulation, we analyze the motion of the double parallel robot and show its characteristics. Specially, we investigate the workspace in terms of positional space as well as orientational space.