• 제목/요약/키워드: Rack and pinion

검색결과 72건 처리시간 0.022초

인벌류우트-圓弧 合成齒形의 諸特性 (Mechanical characteristics of involute-circular arc composite tooth profile)

  • 변준형;최상훈;윤갑영
    • 대한기계학회논문집
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    • 제10권6호
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    • pp.870-875
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    • 1986
  • 본 연구에서는 랙의 이끝부분을 full-rounded tip으로 설계한 후, 이에 의하 여 창성되는 피니언의 이뿌리곡선을 구하여 전체치형을 완성하였다. 그리고 합성치 형기어의 미끄름율, 유효이뿌리원에서의 공칭굽힘응력과 두쌍접촉호의 길이대 원호부 분접촉호의 길이의 비인 접촉계수를 해석적인 방법으로 구하였다.또한 이들 특성들 과 물림율등 제특성을 비교.검토하여 공구압력각, 인벌류우트부분의 크기를 나타내는 물림각 및 원호반경등의 변화에 대한 제특성의 변화를 고려한 합성치형의 성능을 향상 시킬 수 있는 설계방법을 구하였으며, 합성치형과 표준인버류우트치형을 비교하였다.

A passive vibration isolator with bio-inspired structure and inerter nonlinear effects

  • Jing Bian;Xu-hong Zhou;Ke Ke;Michael CH Yam;Yu-hang Wang;Yue Qiu
    • Structural Engineering and Mechanics
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    • 제88권3호
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    • pp.221-238
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    • 2023
  • This paper developed and examined a novel passive vibration isolator (i.e., "X-inerter") motivated by combining a bio-inspired structure and a rack-pinion inerter. The bio-inspired structure provided nonlinear stiffness and damping owing to its geometric nonlinearity. In addition, the behavior was further enhanced by a gear inerter that produced a special nonlinear inertia effect; thus, an X-inerter was developed. As a result, the X-inerter can achieve both high-static-low-dynamic stiffness (HSLDS) and quasi-zero stiffness (QZS), obtaining ultra-low frequency isolation. Furthermore, the installed inerter can produce a coupled nonlinear inertia and damping effect, leading to an anti-resonance frequency near the resonance, wide isolation region, and low resonance peak. Both static and dynamic analyses of the proposed isolator were conducted and the structural parameters' influence was comprehensively investigated. The X-inerter was proven to be comparatively more stable in the ultra-low frequency than the benchmarking QZS isolator due to the nonlinear damping and inertia properties. Moreover, the inertia effect could suppress the bio-inspired structure's super- and sub-harmonic resonance. Therefore, the X-inerter isolator generally possesses desirable nonlinear stiffness, nonlinear damping, and unique nonlinear inertia, designed to achieve the ultra-low natural frequency, the anti-resonance property, and a wide isolation region with a low resonance peak.

Performance Improvement of IPMC(Ionic Polymer Metal Composites) for a Flapping Actuator

  • Lee, Soon-Gie;Park, Hoon-Cheol;Pandita Surya D.;Yoo Young-Tai
    • International Journal of Control, Automation, and Systems
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    • 제4권6호
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    • pp.748-755
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    • 2006
  • In this paper, a trade-off design and fabrication of IPMC(Ionic Polymer Metal Composites) as an actuator for a flapping device have been described. Experiments for the internal solvent loss of IPMCs have been conducted for various combinations of cation and solvent in order to find out the best combination of cation and solvent for minimal solvent loss and higher actuation force. From the experiments, it was found that IPMCs with heavy water as their solvent could operate longer. Relations between length/thickness and tip force of IPMCs were also quantitatively identified for the actuator design from the tip force measurement of 200, 400, 640, and $800{\mu}m$ thick IPMCs. All IPMCs thicker than $200{\mu}m$ were processed by casting $Nafion^{TM}$ solution. The shorter and thicker IPMCs tended to generate higher actuation force but lower actuation displacement. To improve surface conductivity and to minimize solvent evaporation due to electrically heated electrodes, gold was sputtered on both surfaces of the cast IPMCs by the Physical Vapor Deposition(PVD) process. For amplification of a short IPMC's small actuation displacement to a large flapping motion, a rack-and-pinion type hinge was used in the flapping device. An insect wing was attached to the IPMC flapping mechanism for its flapping test. In this test, the wing flapping device using the $800{\mu}m$ thick IPMC. could create around $10^{\circ}{\sim}85^{\circ}$ flapping angles and $0.5{\sim}15Hz$ flapping frequencies by applying $3{\sim|}4V$.

초정밀 선형 모터 시스템의 적응형 힘리플 보상과 정밀 트랙킹 제어 (Adaptive Force Ripple Compensation and Precision Tracking Control of High Precision Linear Motor System)

  • 최영만;권대갑;이문구
    • 한국정밀공학회지
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    • 제22권12호
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    • pp.51-60
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    • 2005
  • This paper describes a robust control scheme for high-speed and long stroke scanning motion of high precision linear motor system consisting of linear motor, air bearing guide and position measurement system using heterodyne interferometer. Nowadays, semiconductor process and inspection of wafer or LCD need high speed and long travel length for their high throughput and extremely small velocity fluctuations or tracking errors. In order to satisfy these conditions, linear motor system are widely used because they have large thrust force and do not need motion conversion mechanisms such as ball screw, rack & pinion or capstan with which the system are burdened. However linear motors have a problem called force ripple. Force ripple deteriorates the tracking performances and makes periodic position errors. So, force ripple must be compensated. To maximize the tracking performance of linear motor system, we propose the control scheme which is composed of a robust control method, Time Delay Controller (TDC) and a feedforward control method, Zero Phase Error Tracking Control (ZPETC) for accurate tracking a given trajectory and an adaptive force ripple compensation (AFC) algorithm fur estimating and compensating force ripple. The adaptive ripple compensation is continuously refined on the basis of tracking error. Computer simulation results based on modeled parameters verify the effectiveness of the proposed control scheme for high-speed, long stroke and high precision scanning motion and show that the proposed control scheme can achieve a sup error tracking performance in comparison to conventional TDC control.

자기부상방식 AMD를 이용한 모바일 하버용 횡동요 저감 데모 장비의 개발 (Development of Anti-Rolling Demo System for Mobile Harbor Using Maglev Type AMD)

  • 박철훈;함상용;김병인;이성휘;박희창;조한욱;문석준;정태영
    • 한국정밀공학회지
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    • 제28권1호
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    • pp.40-47
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    • 2011
  • Mobile harbor which is a novel concept of ocean transportation to bring the containers from the cargo ship waiting on the ocean away is being focused now. To provide the mobile harbor with the stable loading/unloading condition, it is necessary to develop the oscillation mitigation technologies such as anti-rolling system. Anti-rolling system using AMD(Active Mass Driving) has merits that it can handle the disturbances more actively and mitigate the rolling oscillation faster than other type anti-rolling system. However, rack-and-pinion type AMD has problems such as big friction noise from gears and motor, wear and tear, and continuous maintenance. In this paper, novel anti-rolling system using Maglev type AMD for mobile harbor is suggested in order to resolve the problems caused by the friction. This novel anti-rolling system doesn't make any friction because it supports the moving mass by using magnetic levitation force and moves it by using propulsion force from the linear motor. The demo system of the novel anti-rolling system using maglev type AMD has been developed in order to investigate its feasibility. This paper presents the procedures and results of development of this demo system.

Wave energy conversion utilizing vertical motion of water in the array of water chambers aligned in the direction of wave propagation

  • Hadano, Kesayoshi;Lee, Ki Yeol;Moon, Byung Young
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제9권3호
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    • pp.239-245
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    • 2017
  • As a new technical approach, wave energy converter by using vertical motion of water in the multiple water chambers were developed to realize actual wave power generation as eco-environmental renewable energy. And practical use of wave energy converter was actually to require the following conditions: (1) setting up of the relevant device and its application to wave power generation in case that severe wave loading is avoided; (2) workability in installation and maintenance operations; (3) high energy conversion potential; and (4) low cost. In this system, neither the wall(s) of the chambers nor the energy conversion device(s) are exposed to the impulsive load due to water wave. Also since this system is profitable when set along the jetty or along a long floating body, installation and maintenance are done without difficulty and the cost is reduced. In this paper, we describe the system which consists of a float, a shaft connected with another shaft, a rack and pinion arrangement, a ratchet mechanism, and rotary type generator(s). Then, we present the dynamics model for evaluating the output electric power, and the results of numerical calculation including the effect of the phase shift of up/down motion of the water in the array of water chambers aligned along the direction of wave propagation.

인공근육형 LIPCA를 이용한 물고기 모방 로봇의 설계, 제작 및 실험 (Mechanical Design Fabrication and Test of a Biomimetic Fish Robot Using LIPCA as an Artificial Muscle)

  • 허석;테디 위구나;구남서;박훈철
    • 대한기계학회논문집A
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    • 제31권1호
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    • pp.36-42
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    • 2007
  • This paper presents mechanical design, fabrication and test of a biomimetic fish robot actuated by a unimorph piezoceramic actuator, LIPCA(Lightweight Piezo-Composite curved Actuator.) We have designed a linkage mechanism that can convert bending motion of the LIPCA into the caudal fin movement. This linkage system consists of a rack-pinion system and four-bar linkage. Four types of artificial caudal fins that resemble caudal fin shapes of ostraciiform subcarangiform, carangiform, and thunniform fish, respectively, are attached to the posterior part of the robotic fish. The swimming test under 300 $V_{pp}$ input with 0.6 Hz to 1.2 Hz frequency was conducted to investigate effect of tail beat frequency and shape of caudal fin on the swimming speed of the robotic fish. At the frequency of 0.9 Hz, the maximum swimming speeds of 1.632 cm/s, 1.776 cm/s, 1.612 cm/s and 1.51 cm/s were reached for fish robots with ostraciiform, subcarangiform carangiform and thunniform caudal fins, respectively. The Strouhal number, which means the ratio between unsteady force and inertia force, or a measure of thrust efficiency, was calculated in order to examine thrust performance of the present biomimetic fish robot. The calculated Strouhal numbers show that the present robotic fish does not fall into the performance range of a fast swimming robot.

선형 추진 BLDC 모터에 대한 파라미터 추정기법을 이용하는 오토튜닝(Auto Tunning) PI 제어기설계 (The Design of an Auto Tunning PI Controller using Parameter Estimation Method for the Linear BLDC Motor)

  • 차영범;송도호;김진애;최중경
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2005년도 춘계종합학술대회
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    • pp.959-962
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    • 2005
  • 서보 모터는 컴퓨터와 센서로부터 오는 지령에 대해 높은 위치 정밀도와 정확한 속도제어가 가능해 자동화 시스템에서 중요한 부분으로 사용된다. 본 논문에서는 선형추진 BLDC모터로부터 얻어지는 파라메터를 추정하여 정현여자에 의해 구동되는 방식을 제안했다. 파라미터 추정은 제어기의 게인 튜닝과 외란 관측기를 통해 이루어졌다. 이러한 것을 가능하게 하기 위해 DSP(TMS320F240)를 사용하여 시스템을 구성 하였으며 FOC(Field Oriented Control)방식을 적용하였다. 본 시스템에 사용 된 TMS320F240은 A/D Converter와 PWM 발생부, 다수의 IO Port를 내장하고 있어 서보모터 제어에 유용하게 사용될 수 있는 프로세서이다.

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토마토 재배용 연동 플라스틱 온실 개발 (Development of Multi-span Plastic Greenhouse for Tomato Cultivation)

  • 유인호;이응호;조명환;류희룡;김영철
    • 생물환경조절학회지
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    • 제21권4호
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    • pp.428-436
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    • 2012
  • 본 연구에서는 토마토 재배에 적합한 규격을 가지면서 기상재해에 안전한 토마토 재배용 연동 비닐하우스를 설계하였다. 토마토 하우스의 규격은 폭 7m, 측고 4.5m, 동고 6.5m이다. 1995년에 농촌진흥청에서 개발한 1-2W형 하우스와 비교해서 폭은 같지만 측고는 1.8m, 동고는 2m 더 높다. 중방은 작물하중과 장치하중을 견딜 수 있도록 트러스 구조로 설계하였다. 토마토 하우스는 높으면서도 내재해 설계 기준(MIFFAF, 2010)에 맞게 만들어졌다. 즉, 최고 설계 기준인 풍속 $40m{\cdot}s^{-1}$, 적설 40cm 이상에 안전하도록 구조안전성 분석을 통해 하우스 기둥, 서까래 등의 부재 규격과 설치 간격을 설정하였다. 1-2W형 하우스와 달리 토마토 하우스에는 랙-피니언 타입의 천창을 용마루 부분에 설치하여 외부 공기 유입과 자연 환기를 극대화할 수 있도록 하였다. 하우스 높이가 증가하면 난방비는 증가하므로 토마토 하우스에는 보온력이 우수한 다겹 보온커튼을 설치하여 하우스 바깥으로 빠져나가는 열을 최소화하였다.

선형 추진 BLDC 모터에 대한 파라미터 추정 기법을 이용하는 오토 튜닝(Auto Tuning) PI 제어기 설계 (The Design of an Auto Tuning PI Controller using a Parameter Estimation Method for the Linear BLDC Motor)

  • 차영범;송도호;구본민;박무열;김진애;최중경
    • 한국정보통신학회논문지
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    • 제10권4호
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    • pp.659-666
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    • 2006
  • 서보 모터는 컴퓨터와 센서로부터 오는 지령에 대해 정밀한 모션제어 즉, 정확한 속도조절과 위치 잡기를 수행함으로써 자동화 시스템에서 중요한 부분으로 사용된다. 특히, 선형추진 BLDC모터는 볼스크류, 타이밍 벨트, 랙/피니온과 같은 마찰 유도 전달 메카니즘들과 연결을 갖는 회전식 서보모터들에 비해 다양한 장점들을 갖는다. 본 논문은 정현파 구동형 선형 추진 BLDC모터의 동특성과 출력들로부터 얻어지는 정보를 이용하여 미지의 전동기 계통 파라미터들을 추정하는 방식을 제안한다. 추정된 파라미터들은 제어기와 외란 관측기의 이득을 조절하는데 사용될 수 있다. 이러한 목적을 이루기 위해 고성능의 디지털신호처리프로세서로 계자기준제어(FOC)기법을 구현하기 위해 설계된 TMS320F240을 선형 BLDC 서보 전동기의 제어기로서 사용한다. 이 서보전동기 응용 전용의 DSP는 A/D Converter와 PWM 발생부, 다수의 IO Port를 내장하고 있어 서보모터 제어기에 중요한 역할을 담당하게 된다. 이 선형 BLDC 서보 전동기 시스템은 또한 IPM 구동기와 홀센서 타입의 전류센서모듈 그리고 게이트 구동 신호와 고장 신호들의 전기적 절연을 위한 광결합 모듈을 포함한다.