• 제목/요약/키워드: Manual transmission clutch

검색결과 44건 처리시간 0.017초

클러치 비틀림특성에 의한 자동차 수동변속기 치타음에 관한 연구 (A Study on Rattle Noise of Automotive Manual Transmission by way of Torsional Characteristics of a Clutch Disc)

  • 홍동표;정태진;태신호;최병기
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1994년도 추계학술대회논문집; 한국종합전시장, 18 Nov. 1994
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    • pp.217-224
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    • 1994
  • 변속기에서 발생하는 치타음을 클러치를 통하여 해결하려는 방법으로 자동차 중립시와 주행시 각기 다른 비틀림특성을 갖는 클러치를 대상으로 한 실험으로부터 엔진플라이휠, 인풋기어, 변속기 케이스의 진동을 측정하고 분석함으로써 다음과 같은 결론을 얻었다. 자동차 중립시나 주행시에 수동변속기에서 발생하는 치타음은 클러치를 통하여 해결될 수 있음을 알 수 있었다. 클러치의 프리댐퍼와 메인댐퍼의 비틀림강성과 히스테리시스는 중립시와 주행시 치타음에 대해 각기 다른 특성을 갖게 되는데 메인 댐퍼만으로 구성된 클러치는 주행시에는 치타음을 제거하는데 효과적이지만 중립시에는 인풋기어의 비틀림 공진에 의하여 변속기가 가진되어 치타음이 발생하였다. 주행시 변속기 치타음 제거효과를 감소시키지 않고 중립시 변속기에서 발생하는 치타음을 제거하기 위해 메인댐퍼만으로 이루어진 클러치디스크에 프리댐퍼 부분을 첨가하여 보았는데 자동차 주행시의 치타음 제거효과를 유지하면서 중립시의 치타음을 제거시킬 수 있다는 것을 확인하였다.

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듀얼매스 플라이휠의 최적 댐퍼 특성에 대한 고찰 (A Review of Optimum Damper Characteristics of Dual Mass Flywheel)

  • 박동훈;최명진
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2002년도 춘계학술대회논문집
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    • pp.986-990
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    • 2002
  • Dual Mass Flywheel(DMF) is used in order to improve the vibration characteristics of drivetrain of manual transmission vehicles. Regardless of its complexity and high cost, application of DMF is keep increasing due to a trend of using Diesel engines in passenger cars and light weight design of drivetrains. Modeling and analysis of DMF is rather simple, but finding out optimum parameters of damper may not be easy. Furthermore, its realization in DMF has some limitations due to DMF's structure and its structure dependent damping characteristics. Requirements on spring-damper characteristics of DMF has been reviewed and investigations on structures and damping characteristics of currently Produced DMFs have been made in this paper. Also, ideal spring and damper characteristics has been proposed based on such investigations.

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4WD HEV의 회생제동 제어로직 개발 (Development of Regenerative Braking Control Algorithm for a 4WD Hybrid Electric Vehicle)

  • 여훈;김동현;김달철;김철수;황성호;김현수
    • 한국자동차공학회논문집
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    • 제13권6호
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    • pp.38-47
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    • 2005
  • In this paper, a regenerative braking algorithm is proposed to make the maximum use of the regenerative braking energy for an independent front and rear motor drive parallel HEV. In the regenerative braking algorithm, the regenerative torque is determined by considering the motor capacity, motor efficiency, battery SOC, gear ratio, clutch state, engine speed and vehicle velocity. To implement the regenerative braking algorithm, HEV powertrain models including the internal combustion engine, electric motor, battery, manual transmission and the regenerative braking system are developed using MATLAB, and the regenerative braking performance is investigated by the simulator. Simulation results show that the proposed regenerative braking algorithm contributes to increasing the battery SOC, which recuperates 60 percent of the total braking energy while satisfying the design specification of the control logic. In addition, a control algorithm which limits the regenerative braking is suggested by considering the battery power capacity and dynamic response characteristics of the hydraulic control module.

근전도 생리 분석을 이용한 상용차용 전자페달의 평가 (Evaluation of Electronic Pedal in Commercial Vehicles using Physiology Analysis of Electromyography)

  • 김재준;김경;신선혜;유창호;정구영;오승용;권대규
    • 한국정밀공학회지
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    • 제28권12호
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    • pp.1434-1440
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    • 2011
  • In this paper, we assessed muscular activities of lower limbs and foot pressure for car and bus drivers according to operating three electronic pedals that we developed. To analyze drivers' physical exhaustion, muscular fatigue of lower limbs was evaluated. Eleven car drivers and six urban bus drivers were participated in this experiment. The virtual driving system was used for the real driving environment. The virtual driving system was comprised of a spring seat, a steering wheel, pedals (clutch, excel and brake pedals), a manual transmission and a virtual driving simulation. For the real vibration like situation on the road, six degree of freedom motion base system was used. Measured muscles were rectus femoris (RF), biceps femoris (BF), tibialis anterior (TA) and gastrocnemius (Gn) muscles. For the quantitative muscular activities, integrated electromyography (IEMG) was analyzed. Muscular fatigues also were analyzed through the analysis of the median frequency. In addition, foot pressures were analyzed and compared through the peak and averaged pressure during the operating three developed electronic pedals. The experiments are conducted with total 17 drivers, 11 general public and 6 drivers. As a result of the analysis, electromyogram and fatigue analysis through intermediate frequency reduction for pedal-1 more efficient than other pedals. And foot pressure also was decreased. Consequently, we suggested the most efficient pedal and method to minimize the amount of cumulative fatigue.