• 제목/요약/키워드: Roll System

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DR VACUUM CO., LTD.

  • 이찬용
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2000년도 제18회 학술발표회 논문개요집
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    • pp.30-30
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    • 2000
  • 당사는 각종 진공 장비를 개발/제작한 경험을 바탕으로 25년 동안 진공 산업 발전에 기여하여 왔으며 자체 기술로 HIGH VACUUM 응용시스템 설계 및 제작하고 있다. 이와 함께 3D CAD를 이용한 consulting 및 Modeling 분석을 수행하여, 자체 기술로 설계 및 제작 판매하고 있다. Vacuum System은 In-line System (ITO, SiO2, Cr Tio2, Ag, Al 등), Roll to Roll(Web) Sputtering system (ITO, SiO2, Ar, Metal 등), 유기 EL 박막 진공 증착 장치, PECVD System, Evaporator 시스템 등을 제작 공급하고 있다. 현재 Roll to Roll(Web) Sputtering System은 Dual Cathode를 사용하는 방식으로 개발중에 있으며, 평판 디스플레이용 대면적 Glass를 위한 In-line Sputtering System을 같이 개발하고 있다.

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파이프 비닐온실용 권취식 창개폐기의 개발 (Development of roll - up ventilation system for pipe- constructed plastic film greenhouse)

  • 이기명;박규식;김유일;김태홍
    • 생물환경조절학회지
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    • 제4권2호
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    • pp.232-239
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    • 1995
  • This study was carried out to get required torque data needed to design and develop a roll-up ventilation system in a pipe-constructed plastic film green-house. The results obtained from this study are as follows : 1. The required torques of a roll-up ventilation system in greenhouse are the functions of its length. The torques should multiplied by the conversion coefficients (2.0 in ceiling vent, 1.8 in side vent) in case of application. 2. In constructing pipe-constructed plastic film greenhouse, a shaft pipe is the largest essential element in roll - up shaft weight constitution which have an effect on the required torques. Therefore, the pipe should be light using nonferrous materials like aluminum alloy. 3. A planetary reduction ventilator of differential ring gear type is suitable for a roll-up ventilation system, because it can make high efficient reduction just using the first step shift.

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선박 주행속도 변화를 고려한 Rudder-Roll Stabilization System 설계에 관한 연구 (A Study on Rudder-Roll Stabilization System Design for Ship with Varying Ship Speed)

  • 김영복;채규훈
    • 제어로봇시스템학회논문지
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    • 제8권5호
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    • pp.363-372
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    • 2002
  • In ship operation, the roll motions can seriously degrade the performance of mechanical and personnel effectiveness. So many studies for the roll stabilization system design have been performed and good results have been achieved. In many studies, the stabilizing fins are used. Recently rudders, which have been extensively modified, have been used exclusively to stabilize the roll. But, in the roll stabilization control system, the control performance is very sensitive to the ship speed. So, we can see that it is important to consider the ship speed in the rudder roll control system design. The gain-scheduling control technique is very useful in the control problem incorporating time varying parameters which can be measured in real time. Based on this fact, in this paper we examine the;$H_{\infty}$-Gain Scheduling control design technique. Therefore, we assume that a parameter, the ship speed which can be estimated in real time, is varying and apply the gain-scheduling control technique to design the course keeping and anti-rolling control system far a ship. In this control system, the controller dynamics is adjusted in real-time according to time-varying plant parameters. The simulation result shows that the proposed control strategy is shown to be useful for cases when the ship speed is varying and robust to disturbances like wind and wave.

Fault Diagnosis of Roll Shape Under the Speed Variation in Hot Rolling Mill

  • Lee, Chang-Woo;Kang, Hyun-Kyoo;Shin, Kee-Hyun
    • Journal of Mechanical Science and Technology
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    • 제20권9호
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    • pp.1410-1417
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    • 2006
  • The metal processing system usually consists of various components such like motors, work rolls, backup rolls, idle rolls, sensors, etc. Even a simple fault in a single component in the system may cause a serious damage on the final product. It is therefore necessary to diagnose the faults of the components to detect and prevent system failure. Especially, the defects in a work roll are critical to the quality of strip. It is especially difficult to detect faults of a roll by using the existing frequency analysis method if the speed of the roll is changing. In this study, a new diagnosis method for roll eccentricity under the roll speed changes was developed. The new method was induced from analyzing the rolling mechanism by using rolling force models, radius-speed relationship, and measured rolling force, etc. Simulation results by using the field data show that the proposed method is very useful.

A Study on the Fault Diagnosis of the 3-D Roll Shape in Cold Rolling

  • Lee, Chang-Woo;Kang, Hyun-Kyoo;Shin, Kee-Hyun
    • Journal of Mechanical Science and Technology
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    • 제18권12호
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    • pp.2174-2181
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    • 2004
  • The metal processing system usually consists of various components such as motors, work rolls, backup rolls, idle rolls, sensors, etc. Even a simple fault in a single component in the system may cause a serious damage on the final product. It is, therefore, necessary to diagnose the faults of the components to detect and prevent a system failure. Especially, the defects in a work roll are critical to the quality of strip. In this study, a new 3-D diagnosis method was developed for roll shape defects in rolling processes. The new method was induced from analyzing the rolling mechanism by using a rolling force model, a tension model, the Hitchcock's equation, and measurement of the strip thickness, etc. Computer simulation shows that the proposed method is very useful in the diagnosis of the 3-D roll shape.

시스템 식별법을 이용한 선박의 횡동요 계수 추정 (Estimation of Roll Related Coefficients of a Ship by Using the System Identification Method)

  • 윤현규;손남선
    • 대한조선학회논문집
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    • 제41권4호
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    • pp.53-58
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    • 2004
  • When a fast container ship or a naval vessel is turning, comparable roll motions occur. Therefore, roll effect has to be considered in the horizontal equations of motion of the ship to predict the maneuverability well. In this thesis, a new method to determine a roll model structure and estimate its coefficients by applying the system identification technique to the data of sea trial tests was proposed. The simulation results from the estimated roll model were well consistent with the true one in spite of the difference between the estimated and the true model structures of roll hydrodynamic moment.

롤생산방식 유연회로기판의 레이저 드릴링 고속화 요소기술 (Enabling Technology for High-Speed Laser Drilling of Roll Type FPCB)

  • 라웅재;최환영
    • 실천공학교육논문지
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    • 제15권1호
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    • pp.127-132
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    • 2023
  • Roll to Roll (이하 RTR)로 연결된 유연회로기판(이하 FPCB)에서 일정한 장력을 유지하여 안정적인 홀 가공이 가능하게 하는 Dancer Roll System를 경량화하고 서보모터를 활용한 토크 제어를 통해 기존 방식 FPCB RTR에서는 대응 불가능하였던 중력가속도의 2배가 되는(이하 2.0G) 가속도의 고속 가공이 가능하도록 요소기술과 성능 지표를 제시한다. 기존 마그넷 클러치 방식 RTR에서는 달성이 불가능하였던 높은 회전수와 발열 문제, 낮은 토크 문제등을 마그네슘 소재를 이용한 Roll의 경량 가공법 개발과 서보모터의 토크 제어 알고리즘 개발을 통하여 해결하여 FPCB에 균일한 장력을 제공하고 토크 안정성을 높인다. 본 연구에서 개발한 요소 기술로 인해 Dancer Roll의 반응속도가 개선되어 목표한 고속화를 달성하였다.

미세 패턴 롤 금형 가공시스템의 온도변화가 가공정밀도에 미치는 영향 연구 (Influence upon Machining Accuracy of Micro-Pattern Roll Mold Processed by Temperature Variation)

  • 제태진;박상천;이강원;노진석;최두선;황경현
    • 소성∙가공
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    • 제18권2호
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    • pp.107-111
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    • 2009
  • Temperature variation happens in micro prism roll mold processing system during machining the prism pattern roll mold using manufacturing optical films of LCD (liquid crystal display). This temperature variation induces pitch errors of the prism patterns. The temperature variation displaces the positions of the diamond cutting tool on the roll which was coated by the copper. In order to prevent the pitch errors, the stabilizing the temperature of machining environment is needed. Therefore, the researching on the temperature variation of the ultra-precision roll mold processing system on the machining of micro prism rot 1 mold is needed. In this paper, the temperature variation of micro prism roll mold processing system is researched, the influence is analyzed, and the study for reducing the pitch errors carried out.

농용 무인헬리콥터의 가로균평을 위한 테일부 설계 및 추력 시험 (Tail Rotor Design and Thrust Test for a Roll-balanced Agricultural Unmanned Helicopter)

  • 구영모;배영환;석태수;신시균;박희진
    • Journal of Biosystems Engineering
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    • 제35권5호
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    • pp.302-309
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    • 2010
  • Aerial application using an unmanned agricultural helicopter would allow precise and timely spraying. The attitude of a helicopter depends on a number of dynamic variables for roll-balanced flight. Laterally tilting behavior of a helicopter is a physically intrinsic phenomenon while hovering and forwarding. In order to balance the fuselage, the rotor should be counter-tilted, resulting in the biased down-wash. The biased spraying toward right side causes uneven spray pattern. In this study, a raised tail rotor system for the roll-balanced helicopter was studied. Thrust of the tail rotor system was measured and theoretically estimated for the fundamental database of the roll-balanced helicopter design. The estimated tail thrust and roll-moment would be used to design the raising height of tail rotor and roll balancing dynamics. The unmanned agricultural helicopter required the tail rotor thrust of about 39.2 N (4.0 kgf) during hovering with a payload of 235.4 N (24 kgf). A raised tail rotor system would compensate for the physical tilt phenomena. A further attitude control system of helicopter would assist roll-balanced aerial spray application.