• Title/Summary/Keyword: 가변 ER댐퍼

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가변댐퍼의 성능해석

  • 최용빈;박우철;최승복;정재천
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1992.04a
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    • pp.227-231
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    • 1992
  • 본 연구에서는 ER(electro-rheological) 유체을 이용한 가변댐퍼(variable damper)를 제안했다. 전기장(electric field) 부하시 Bingham특성을 갖는 ER유체는 전기장에따라 항복전단응력이 변하기 때문에이를 이용하여 댐핑력을 제어할 수 있다. 피스톤의 상하압력차가 전기장의 함수이기 때문에 기존의 비능동 혹은 능동형 댐퍼에서 필요로하는 복잡한 밸브시스템이 필요없으며, 따라서 구조면에서 매우 간단하게 설계될 수 있고, 반응시간 또한 매우 빠르다. 간단한 현가정치 모델을 설정 하여제안된 ER 댐퍼의 효율성과 우수성을 주파수 및 시간 영역에서 해석하였다.

Performance Investigation of a Continuously Variable ER Damper for Passenger Vehicles (승용차용 연속가변 ER댐퍼의 성능연구)

  • Kim, K.S.;Chang, E.;Choi, S.B.;Cheong, C.C.;Suh, M.S.;Yeo, M.S.
    • Transactions of the Korean Society of Automotive Engineers
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    • v.3 no.6
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    • pp.69-77
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    • 1995
  • This paper presents performance investigation of a continuously variable ER(Electro-Rheological) damper for passenger vehicles. A dynamic model of the damper is formulated by incorporating electric field-dependent Bingham properties of the ER fluid. The Bingham properties are experimentally obtained through Couette type electroviscous measurement with respect to two different particle concentrations. The governing equation of the hydraulic model treating three components of fluid resistances;electrode duct flow, check valve flow and piston gap flow, is achieved via the bond graph method. A prototype ER damper is then designed and manufactured on the basis of parameter analysis. The damping forces of the system are experimentally evaluated by changing the intensity of the electric field, the particle concentration and the electrode gap.

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Performance Analysis of a Semi-Active Variable Damper Featuring Electro-Rheological Fluids (ER 유체를 이용한 반능동식 가변댐퍼의 성능해석)

  • 최승복;정재천;최용빈;허승진;서문석
    • Transactions of the Korean Society of Automotive Engineers
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    • v.1 no.1
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    • pp.90-100
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    • 1993
  • This paper presents some inherent characteristics of a semi-active variable damper featuring electro-rheological (ER) fluid. The damping force of the damper can be selectively adjusted or controlled by employing electric field to the ER fluid domain. This is possible owing to the pressure drop across the piston occured by field-dependent variable yield stress of the ER fluid. This is fundamentally different than the performance of a conventional adjustable viscous damper. To demonstrate the effectiveness and superiority over the conventional one, the proposed damper is incorporated with a suspension system. A quarter car model with the suspension system is formulated and represented by a state equation. By choosing numerical values based on realistic package size, power requirements and suitable ER properties, the performance characteristics of the suspension system are obtained and evaluated in both frequency and time domains. The effects of constant electric field and on-off controlled electric field which relates to the damping force are also examined.

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Control and Response Characteristics of a Continuously Variable ER Damper (연속가변 ER 댐퍼의 제어 및 응답특성)

  • 최승복;최영태;박우철;정재천;서문석;여문수
    • Transactions of the Korean Society of Automotive Engineers
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    • v.4 no.6
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    • pp.164-174
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    • 1996
  • This paper presents control and response characteristics of a continuously variable ER(electrorheological) damper for small-sized vehicles. The ER damper is devised and its governing equation of motion is derived from the bond graph model. The field-dependent yield shear stresses are distilled from experimental investigation on the Bingham property of the ER fluid. The distilled data are incorporated into the governing system model and, on the basis of this model, an appropriate size of the ER damper is manufactured. After evaluating the field-dependent damping performance of the proposed ER damper, the skyhook control algorithm is formulated to achieve desired level of the damping force. The controller is then experimentally implemented and control characteristics of the ER damper are presented in order to demonstrate superior controllability of the damping force. In addition, response characteristics of the damping force with respect to the electric field with fast on-off frequency are provided to show the feasibility of practical application.

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A Continuously Variable ER Damper with Energy Generation (재생 에너지를 이용하는 연속가변 ER댐퍼에 관한 연구)

  • Kim, K.S.;Cheong, C.C.
    • Solar Energy
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    • v.18 no.4
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    • pp.77-86
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    • 1998
  • This study presents a so-called regenerative ER damper which does not require external power sources with aid of energy conversion from kinetic energy into electrical energy. The ER damper is manufactured by employing a rack and pinion mechanism which converts a linear piston motion to a rotary motion. This rotary motion is amplified by gears and subsequently activates a generator to produce an electrical energy. In order to demonstrate the efficiency of the mechanism, with respect to the frequency of the ER damper is investigated a generated electric voltage, which is amplified via a transformer prior to being applied to the ER damper. In addition, the damping force of the ER damper obtained by the regenerated voltage is evaluated.

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Dynamic Characteristics of Semi-Active Shock Absorber Using Electrorheological Fluid (ER 유체를 이용한 반능동 완충장치의 동적 특성)

  • Kim, Do-Hyung;Cho, Ki-Dae;Jung, Yong-Hyun;Lee, In;Oshima, Nobuo;Fukuda, Takehito
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.11 no.4
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    • pp.13-21
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    • 2001
  • Electrorheological(ER) fluid is a kind of smart material with variable shear stress and dynamic viscosity under various electric field intensity. Electric field can control the damping characteristics of ER damper. The objective of this study is the analysis of the performance of ER damper and its application to shock absorber. Idealized nonlinear Bingham plastic shear flow model is used to predict the velocity profile between electrodes. Cylindrical dashpot ER damper with moving electrode is constructed and tested under various electric fields. The analytic and experimental results for damping force are compared and discussed. Drop test system using ER damper is prepared to identify transient vibration characteristics. The rebound is eased as the applied electric field increases. When semi-active control algorithm is applied, rebound phenomenon disappears and vibration energy level decays faster than the case of zero electric field.

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