VVT용 전자식 흡/배기 밸브 시스템 설계를 위한 해석 및 실험

The Analysis and Experiments for the Design of Electro-mechanical Variable Valve Train System

  • 발행 : 2001.05.01

초록

As a method of variable valve train(VVT), Electro-Mechanical Valve(EMV) has been studied. Compared with conventional VVT system, the EMV system has a relatively simple structure. The system has two electromagnets, springs and an armature. The system can be operated by reciprocal action between armature and two electromagnets. And, the operating event can be controlled by electrical signal from controller. Therefore, reduction of emission and fuel consumption can be achieved through valve event control at each engine operating condition. In this study, characteristics of EMV system were investigated by simulations and experiments. The results of simulation and experiment show that the core shape and material characteristics are dominant parameters on magnetic force and delay time. In order to apply the system to commercial engine, it has a compact size and high stiffness springs(50N/mm) to increase the valve speed. Because of high valve seating velocity, loud noise and high impact force generated, which can lead to reduction of actuator durability. Therefore, further research is required to reduce valve seating velocity.

키워드

참고문헌

  1. SAE 880390 Effect of Variable engine valve timing on fuel economy T.H.Ma
  2. 가솔린 엔진에서 실린더내 잔류가스와 공연비 측정 및 모델링 조한승
  3. SAE 940816 Control of Engine Load via Electro-mechanical Valve Actuator M.A.Theobald
  4. SAE 2000-01-1225 Sensorless control of Electro-mechanical Actuators for variable valve train S.Butzmann;J.Melbert
  5. Magnetic Core Selection for Transformers and Inductors McLyman;Colonel Wm. T.