• Title/Summary/Keyword: 마이크로 밸브

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A Study on a Digital Amplifier.Controller for Proportional Control Valve (비례제어밸브용 디지털 앰프.컨트롤러에 대한 연구)

  • Lee, J.C.;Koh, J.U.;Kwon, T.H.;Shin, H.B.
    • Transactions of The Korea Fluid Power Systems Society
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    • v.8 no.1
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    • pp.19-25
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    • 2011
  • This study presents the design of digital amplifier.controller for a proportional control valve and the development of PID discrete control scheme by using RCP(Rapid Controller Prototyping) system. RCP system is the device to embed the control code developed in PC into the microcontroller on-site. Ramp input test using the digital amplifier.controller developed in this study was carried out for the proportional control valve of domestic production and Bosch Rexroth respectively. The instability problem occurred around maximum displacement of localized valve spool at ramp input test was solved by supplementing offset current to the duty ratio of PWM(Pulse Width Modulation) driving signal to the solenoid. The comparison of test results between localized proportional control valve and Bosch Rexroth's product shows that the characteristics obtained by ramp input test and static flow gains are alike each other. Two valves are about the same in dead bands and hysteresis characteristics.

Experiments of Micro Jet Injection for Bio-Medical Application (바이오 분야 적용을 위한 마이크로 젯 인젝션 실험)

  • Ham, Young-Bog;An, Byeung-Cheol;Trimzi, Mojiz Abbas;Kim, Jong-Dae;Lee, Gi-Tae;park, Jung-Ho;Yun, So-Nam
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.40 no.10
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    • pp.681-687
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    • 2016
  • It is essential for micro jet injectors in the biomedical sector to operate under high pressure. High pressure injection, however, is accompanied by high volumes. On/Off valves that can be operated at high speeds have been used to address this problem. In this research, piezoelectric actuators which have a response frequency of the order of hundreds of kilohertz were used as the On/Off valve and experiments were applied. Researchers developed a controller to precisely manipulate the piezoelectric valve with various waveforms. They also fabricated five types of nozzles to consider the effect of nozzle type on injection. This allowed researchers to manipulate and confirm factors that can affect the injection volume and force. Results of this experiment have shown how to decrease the injection volume and increase the injection force. and it is predicted that the optimized injection volume and force value can be determined depending on the skin type.

The Design and Implementation of the Motorized Valve Control System using CANopen Protocol (CANopen 프로토콜을 이용한 전동밸브 제어시스템 설계 및 구현)

  • Lee, Myung-Eui;Shin, Keun-Soo;Yang, Sung-Hyun
    • Journal of Advanced Navigation Technology
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    • v.14 no.3
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    • pp.321-327
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    • 2010
  • This paper deals with the design and development of the motorized valve control system using CANopen protocol. The CAN network protocol is used in the physical layer(layer 1) and data link layer(layer 2), and other upper network layer above that layer 1 and 2 utilize the CANopen protocol in this paper. The motorized valve controller is implemented by a PIC microprocessor, and the server application software for the control system user is written in C# language. In particular the CANopen protocol is widely used int the area such as ship automation systems and marine transportation systems. The experimental result of the proposed control system implemented in this paper is evaluated via real-time experiments, which works well as designed.

Fabrication of the Micro-pump using Stereolithography Technology (Stereolithography 기술을 이용한 마이크로 펌프 제작)

  • Lee, Young-Tae;Seo, Hee-Don
    • Journal of Sensor Science and Technology
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    • v.10 no.4
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    • pp.232-238
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    • 2001
  • We fabricated micro-pump using stereolithography technology. The pump was fabricated using PZT for its drive and used non-movable valve of diffuser/nozzle concept. Size of the pump chamber is, $14mm{\psi}$, narrow hole of diffuser/nozzle is $0.5mm{\psi}$ and wide hole $1mm{\psi}$ and chamber depth is 1.2mm, respectively. We confirmed its operation at frequency 100Hz, supply voltage $90{\sim}250Vp-p$. As the result of the pump working measurement, when ethanol is used, the pressure head difference between inlet and outlet of the pump is about 53mm in the frequency of 100Hz, 200V of Vp-p.

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Characterization of Bi-directionally Oscillating Microflow and Flow Rectification Performance of Microdiffusers (마이크로 디퓨저 내의 양 방향 동적 유동과 펌프 구동 주파수에 따른 유동정류 특성 연구)

  • Lee, Yeong-Ho;Gang, Tae-Gu;Jo, Yeong-Ho
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.26 no.2
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    • pp.291-299
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    • 2002
  • This paper characterizes hi-directionally oscillating flow in planar microdiffusers in order to evaluate the frequency-dependent flow rectification performance of the microdiffusers. In the theoretical study, we analyze a hi-directionally oscillating flow in the planar microdiffuser. In the experimental study, we fabricate two different microdiffuser prototypes, having different neck widths of 100 ㎛ (D100) and 300 ㎛(D300), respectively. The experimental net flow rates are measured as 116.6 $\mu$ι/min. and 344.4 $\mu$ι/min. for D100 and D300, respectively. The experimental flow rate of D300 decreases at the oscillating flow frequencies higher than 90Hz, at which the net boundary layer thickness is reduced to the microdiffuser neck width. It is experimentally verified that the flow rectification performance and the net flow rate of the microdiffusers tend to decrease when the boundary layer thickness is smaller than the diffuser neck width.

Properties and Electrical Characterization by Materials md the number of Times of Sol Coating of PBT Thick Film for Biochip (바이오칩 응용을 위한 저온 소결형 PZT 후막의 졸 코팅 재료와 횟수에 따른 물성 및 전기적 특성)

  • Park, Jae-Hong;Son, Jin-Ho;Kim, Tae-Song;Hwang, Jae-Seop;Park, Hyeong-Ho;Kim, Hwan
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.11a
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    • pp.139-139
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    • 2003
  • 많은 압전 후막은 여러 감지소자, 통신 및 사무자동화 기기, 전기 및 전자부품, 의료장비 및 국방산업에 까지 널리 응용되어 왔다. 그 중에서도 압전특성이 뛰어난 PZT 후막은 마이크로 펌프, 밸브, 헤드, 모터, 트랜스듀서 뿐 아니라 최근 바이오칩용 센서와 액추에이터로서 널리 연구되고 있다. 또한 마이크로 센서와 액추에이터 의 제작 및 구동을 위한 MEMS 기술의 도입으로 실리콘 베이스의 소자 개발이 집중되고 있다. 스크린 프린팅 방법은수 마이크론에서 수십 마이크론 후막의 실현이 용이하고 비교적 경제적이며 소자신뢰도가 높고 대량생산에 유리하여 활발한 연구가 진행 중이다. 그러나 후막은 벌크에 비해 기공률이 높고, 또 소자응용에 있어서 고온소결 시 MEMS공정을 위한 실리콘 베이스 기판과의 확산 및 반응에 의 한 계면 및 활물질 성능의 저하가 문제가 되고 있다. 따라서 본 연구에서는 스크린 프린팅과 더불어 졸 코팅 방법의 도입으로 후막의 성형 및 소결 밀도를 높임과 동시에 여러 확산 방지 막의 증착으로 capacitor 형 PZT 후막의 물성 및 전기 적 특성을 향상시키고자 하였다.

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Application of Micro Cross-Flow Turbine to Water Supply System (마이크로 관류수차의 상수도 관로시스템 적용에 관한 연구)

  • Choi Young-Do;Kurokawa Junichi
    • The KSFM Journal of Fluid Machinery
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    • v.9 no.3 s.36
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    • pp.36-43
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    • 2006
  • Recently, micro hydropower and it's useful utilization are taking a growing interest as a countermeasure of global worming by carbon dioxide and exhaustion of fossil fuel. The purpose of this study is to investigate the possibility of extracting micro hydropower wasted by a valve in water supply system using micro cross-flow hydraulic turbine. In order to fulfill the functions of controlling flow rate and pressure in substitute for the valve, air and water are supplied into an air suction hole which is installed on the side wall of micro cross-flow hydraulic turbine. The results show that in case of supplying a lot of air into the air suction hole, about 50% of flow rate and relatively high value of loss coefficient are controlled by the turbine. Moreover, including high possibility of applying the micro cross-flow turbine to water supply system, extended application of the turbine to the water discharge system of drainage and irrigation canal.

디스크형 진동자를 이용하는 새로운 형태의 밸브리스 마이크로 압전 펌프

  • O, Jin-Heon;Im, Jong-Nam;Jeong, Ui-Hwan;Im, Gi-Jo
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2009.11a
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    • pp.91-91
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    • 2009
  • Piezoelectric micro-pump should contain the physical running parts like check valves for acquiring the unilateral motion of fluid from the alternating motion of actuators. But the check valves raise many problems such as abrasion or exhaustive destruction by the recursive mechanical displacement To solve these problems, we propose a novle type piezoelectric valveless micro-pump using peristaltic motion due to the traveling wave excitation. Proposed pump model is consisted of two piezoelectric ceramic plates, elastic metal body, caps for covering flow path, rubber rings for sealing tightly and disk springs for the pressurization of pump body.

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A Study on the BOS control of a small PEM fuel cell stack (소형 PEM 연료전지 스택의 BOS 제어에 관한 연구)

  • Kim, Tae-Hoon;Choi, Woo-Jin
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.274-277
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    • 2009
  • 본 논문에서는 소형 PEM(Proton Exchange Membrane) 연료전지 스택의 BOS(Balance of Stack) 제어에 관하여 논의한다. 별도의 가습 장치가 필요치 않고 BOS의 구성이 비교적 간단한 소형 PEM 연료전지 시스템에서는 팬과 퍼지밸브만의 제어를 통해 스택 내부 수분의 조절과 열 관리가 수행된다. 따라서 본 논문에서는 부하에 따른 최적의 공기유량을 계산하고 요구되는 유량의 공급을 위해 팬을 제어하는 알고리즘을 통해 소형 연료전지 시스템의 과도응답 특성과 안정성을 향상시키는 방법에 관하여 제안한다. 150W급 소형 연료전지 시스템을 꾸미고, 마이크로컨트롤러를 이용한 제어회로를 구현하여 실험함으로써 제안된 알고리즘의 유용함을 검증하였다.

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The fabrication of a micro pump with a flap valve and a phase change actuator (알루미늄 플랩 밸브와 상변화 구동 마이크로 펌프의 제작)

  • Lee, Sang-Woo;Sim, Woo-Young;Yang, Sang-Sik
    • Proceedings of the KIEE Conference
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    • 1998.11c
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    • pp.1023-1025
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    • 1998
  • This paper presents the fabrication of a micro pump consisting of a pair of Al f1ap wave and a phase change actuator. The phase change actuator is composed of a heater, a silicone rubber diaphragm and a working liquid chamber. The diaphragm is actuated by the evaporation and the condensation of the working liquid. The actuator pumps fluid through the valves. The micro pump is fabricated by the anisotropic etch, the boron deposition and the metal evaporation. The forward and the backward flow characteristics of the f1ap valves were obtained. Also, the flow rate of the micro pump has been measured. When the square wave input of 12 V, 60% duty ratio and 0.2 Hz is applied, the average flow rate is $0.15{\mu}{\ell}/sec$ for zero pressure difference.

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