• 제목/요약/키워드: Actuation Mechanism

검색결과 115건 처리시간 0.021초

3차원 미세형상 측정용 탄성힌지 기반 압전구동식 격자 스캐너 (A Piezo-Driven Grating Scanner Based on Flexure Hinges for Measuring 3-Dimensional Microscopic Surface)

  • 최기봉;턴 알렉세이 대성;이재종;김성현;고국원;권순기
    • 제어로봇시스템학회논문지
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    • 제15권8호
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    • pp.798-803
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    • 2009
  • This paper proposes a grating scanner which is driven by a stack-type piezoelectric element. The mechanism of the grating scanner is based on flexure hinges. Using some constraints, the compliant mechanism is designed and then verified by Finite Element Analysis. The designed compliant mechanism is manufactured by wire electro-discharge machining, and then integrated with a stack-type piezoelectric element for actuation and a capacitance displacement sensor for measuring ultra-precision displacement. Experiments demonstrates the characteristics and the performances of the grating scanner using the terms of working range, resonance frequency, bandwidth and resolution. The grating scanner is applicable to a Moire interferometry for measuring 3-dimensional microscopic surface.

Robust Minimum-Time Control with Coarse/Fine Dual-Stage Mechanism

  • Kwon, Sang-Joo;Cheong, Joo-No
    • Journal of Mechanical Science and Technology
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    • 제20권11호
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    • pp.1834-1847
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    • 2006
  • A robust minimum-time control (RMTC) strategy is addressed and it is extended to the dual-stage servo design. Rather than conventional switching type sub-optimal controls, it is a reference following control approach where the predetermined minimum-time trajectory (MTT) is tracked by the perturbation compensator based feedback controller. First, the minimum-time trajectory for a mass-damper system is derived. Then, the perturbation compensator to achieve robust tracking performance in spite of model uncertainty and external disturbance is suggested. The RMTC is also applied to the dual-stage positioner which consists of coarse actuator and fine one. To best utilize the actuation redundancy of the dual-stage mechanism, a null-motion controller to actively regulate the relative motion between the two stages is formulated. The performance of RMTC is validated through simulation and experiment.

수평방향 변위증폭을 위해 U-형상의 PZT 스트립과 지렛대 구조를 이용한 압전구동형 액추에이터의 설계, 제작 및 실험 (Design, Fabrication and Test of Piezoelectric Actuator Using U-Shape PZT Strips and Lever Structure for Lateral Stroke Amplification)

  • 이준형;이택민;최두선;황경현;서영호
    • 대한기계학회논문집A
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    • 제28권12호
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    • pp.1937-1941
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    • 2004
  • We present lateral actuated piezoelectric actuator using U-shaped PZT strip and lever structure for the RF switch application. In the previous study of RF switch, they used horizontal contact switch fabricated by thin film metals. However, thin film metals could not generate large contact force due to low stiffness. In this work, we suggest lateral contact switch which makes large contact force by increasing stiffness. In addition, we use PZT actuator for the high force actuation. Generally actuator using thin film PZT moves to the vertical direction due to the neutral axis shift. Therefore we need lateral motion generation mechanism based on the thin film PZT actuator. In order to increase lateral motion of thin film PZT actuator, we use U-shaped PZT actuator using residual stress control. Also, thin film PZT actuator can generate very small lateral motion of 120${\times}$10$^{-6}$ ${\mu}{\textrm}{m}$/V for d$_{31}$ mode, thus we suggest lever structure to increase stroke amplification. From the experimental study, fabricated PZT actuator shows maximum lateral displacement of 1 ${\mu}{\textrm}{m}$, and break down voltage of the thin film PZT actuator is above 16V.

셀룰로오스 아세테이트 기반 어레이 촉각 액추에이터의 제작 및 특성평가 (Fabrication and Characterization of Array Tactile Actuator Based on Cellulose Acetate)

  • 김현찬;윤성률;고현우;김재환
    • 한국정밀공학회지
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    • 제32권8호
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    • pp.743-748
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    • 2015
  • This paper reports the enhanced fabrication and characterization of a $3{\times}3$ array tactile actuator composed of cellulose acetate. The array tactile actuator, with dimensions of $15{\times}15{\times}1mm^3$, consists of 9 pillar-supported cells made from a cellulose-acetate molding. The fabrication process and performance test along with the results for the suggested actuator are explained. To improve the cell-array fabrication, a laser cut was adopted after the molding process. The displacement of the unit cell increased the input voltage and frequency. Various top masses are added onto the actuator to mimic the touch force, and the acceleration of the actuator is measured under actuation. When 2 kV is applied to the actuator, the maximum acceleration is 0.64 g, which is above the vibrotactile threshold. The actuation mechanism is associated with the electrostatic force between the top and bottom electrodes.

A class of actuated deployable and reconfigurable multilink structures

  • Phocas, Marios C.;Georgiou, Niki;Christoforou, Eftychios G.
    • Advances in Computational Design
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    • 제7권3호
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    • pp.189-210
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    • 2022
  • Deployable structures have the ability to shift from a compact state to an expanded functional configuration. By extension, reconfigurability is another function that relies on embedded computation and actuators. Linkage-based mechanisms constitute promising systems in the development of deployable and reconfigurable structures with high flexibility and controllability. The present paper investigates the deployment and reconfigurability of modular linkage structures with a pin and a sliding support, the latter connected to a linear motion actuator. An appropriate control sequence consists of stepwise reconfigurations that involve the selective releasing of one intermediate joint in each closed-loop linkage, effectively reducing it to a 1-DOF "effective crank-slider" mechanism. This approach enables low self-weight and reduced energy consumption. A kinematics and finite-element analysis of different linkage systems, in all intermediate reconfiguration steps of a sequence, have been conducted for different lengths and geometrical characteristics of the members, as well as different actuation methods, i.e., direct and cable-driven actuation. The study provides insight into the impact of various structural typological and geometrical factors on the systems' behavior.

재활시스템 구동용 수소저장합금 모듈의 열전달 특성 비교 분석 (Analysis of Heat Transfer Characteristics of Metal-Hydride Module for the Actuation of a Rehabilitative System)

  • 김경;김성현
    • 재활복지공학회논문지
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    • 제11권2호
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    • pp.165-171
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    • 2017
  • 고령자 및 장애인의 삶의 질을 높이기 위하여 일상생활동작을 보조하는 경량의 재활보조 시스템이 필요하다. 본 논문에서는 수소저장합금 모듈 3가지를 설계하였고, 열전달 해석을 통하여 수소저장합금 엑츄에이터의 성능을 높일 수 있는 수소저장합금 모듈을 선정하였다. 수소저장합금 엑츄에이터는 열전소자의 열전달을 통하여 수소저장합금 모듈 안에 담겨 있는 수소의 흡수/방출을 통하여 공압 엑츄에이터의 기계적인 동작을 구동시킨다. 수소저장합금 모듈의 열전달의 효과를 검증하기 위하여, 열전소자와 수소저장합금 모듈의 접촉 방식을 선접촉과 면접촉 방식의 3가지 타입으로 3D 모델을 설계하였고, 열전달 해석을 통하여 열전달에 대한 특성을 비교하였다. 그 결과, 열전소자와의 열전달 방식이 선접촉 방식과 비교하여 면접촉 방식의 수소저장합금 모듈이 열전달 특성이 4.4배 좋아지는 것을 확인하였다. 면접촉 방식의 수소저장합금 모듈은 재활보조 시스템의 착용성을 높일 수 있는 수소저장합금 엑츄에이터 개발에 적용될 수 있을 거라 판단된다.

Min-Max 알고리즘을 이용한 피에조 구동형 스테이지의 최적설계 및 성능평가 (Optimal Design and Performance Evaluation of PZT-driven Stage Using Min-Max Algorithm)

  • 최기봉;한창수
    • 한국정밀공학회지
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    • 제22권9호
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    • pp.130-136
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    • 2005
  • This paper presents an optimal design and the performance evaluation of two-axis nano positioning stage with round notched flexure hinges. A flexure hinge mechanism with round notched flexure hinges is to guide the linear motions of a moving plate in the nano positioning stage. A Min-Max algorithm is applied to the design of the flexure hinge mechanism for nano positioning stage. In the design process, the structure of the flexure hinge mechanism is fixed, then the radius of a round hole and the width of two round holes are chosen as design variables, and finally the do sign variables are calculated by the Min-Max algorithm. The machined flexure hinge mechanism, stack type PZTs for actuation and capacitance type displacement sensors for position measurement are assembled into the nano positioning stage. The experimental results of the manufactured nano positioning stage show the first modal resonance frequency of 197 Hz, the operating range of 40 um, and the resolution of 3 nm.

Closed-Loop Timing Controller Design for Control Rod Drive Mechanism (CRDM) Control System in Pressurized Water Reactor

  • Kim, Byeong-Moon;Joon Lyou
    • Nuclear Engineering and Technology
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    • 제29권2호
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    • pp.167-174
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    • 1997
  • The method that the operating condition of Control Rod Drive Mechanism (CRDM) can be monitored without mounting sensors within CRDM housing was developed, and by using this developed method the closed-loop controller for the CRDM was designed which can optimize the performance and maximize the reliability of CRDM operation. Neural network is utilized as pattern recognition engine in detecting CRDM actuation. In this paper, most problems in previous open loop system are resolved. The control algorithms for closed-loop system ore developed and implemented within the hardware of timing controller based on microprocessor. All functions in the timing controller ore verified by means of real time CRDM simulator. The results show that the timing controller performs its intended functions properly.

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줄 꼬임 기반 팔꿈치 외골격 (Twisted Strings-based Elbow Exoskeleton)

  • ;이광현;;유지환
    • 로봇학회논문지
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    • 제8권3호
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    • pp.164-172
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    • 2013
  • This paper presents a new concept of a 1-DOF elbow exoskeleton driven by a twisted strings-based actuator. A novel joint actuation mechanism is proposed and its kinematic model is presented along with its experimental evaluation, and guidelines on how to choose the strings suitable for such an exoskeleton are given. We also proposed and experimentally verified a human intention detection method which takes advantage of intrinsic compliance of the mechanism. The study showed that the developed twisted strings-driven elbow exoskeleton is light, compact and have a high payload-to-weight ratio, which suggests that the device can be effectively used in a variety of haptics, teleoperation, and rehabilitation applications.

힘 센서를 이용하지 않는 혼합형 햅틱 마스터 시스템의 개발 (Development of a Hybrid Haptic Master System Without Using a Force Sensor)

  • 박기환;배병훈
    • 대한기계학회논문집A
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    • 제25권8호
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    • pp.1308-1316
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    • 2001
  • A hybrid type master system is proposed to take the advantage of the link mechanism and magnetic levitation mechanism without using a force sensor. Two different types of electromagnetic actuators, moving coil type and moving magnet types are used to drive the master system which is capable of 4-DOF actuation. It is designed that the rotation motions about x-y axis are decoupled and the whole system is represented by simple dynamic equations. The force reflection is achieved by using the simple relation between the force and applied current and position. The simulation and experimental results are presented to show its performance.