3가지 니들구동방식별 CRDi 디젤엔진용 고압 인젝터의 거시적 분무특성 비교해석

Analysis of Macroscopic Spray Characteristics of Diesel Injectors with Three Different Needle Driving Type in Common Rail Direct Injection System

  • 이진욱 (한국기계연구원 친환경엔진연구센터) ;
  • 민경덕 (서울대학교 기계항공공학부)
  • 발행 : 2006.05.01

초록

The capability of high pressure injection with small fuel quantify at all engine operating conditions is one of the main feature in common rail fuel injection system, which is used in small and light-duty Diesel engine. The key parameter for the better atomized fuel sprays and multiple injections of this common rail fuel injection control, that can be freely selected irrespective of the engine speed and load is the mechanism controlling the needle energizing and movement in high pressure Diesel injector. In the electro-hydraulic injector, the injection nozzle is being opened and closed by movement of the injector's needle which is balanced by pressure between the nozzle seat and the needle control chamber. This study describes the macroscopic spray structure characteristics of the common rail Diesel injectors with different electric driving method i.e. the solenoid-driven and piezo-driven type. The macroscopic spray characteristics such as spray tip speed. spray tip penetration and spray cone angle were investigated by the high speed spray, which is measured by the back diffusion light illumination method with optical system for the high speed temporal photography in a constant volume chamber pressurized by nitrogen gas. As the results, the prototype piezo-driven injector system was designed and fabricated for the first time in domestic case and the effect of injector's needle response driven by different drive type was compared between the solenoid and piezo-driven injector It was found therefore. that the piezo-driven injector showed faster needle response and had better needle control capability by altering the electric input value than the solenoid-driven injector.

키워드

참고문헌

  1. M.Jansons, S. Lin, D. S. Choi, S. Campbell and K. T. Rhee, 'Study of High-Pressure Injection DI Diesel Engine', SAE Paper 1999-01-3494, 1999
  2. H. Y. Kim, J. Y. Koo, H. K. Na and C. S. Kim, 'Simulation of High Pressure Common-rail Fuel Injection System', SAE Paper 98370111, 1998
  3. Shuji Kimura, Osamu Aoki, Hiroshi Ogawa, Shigeo Muranaka and Yoshiteru Enomoto, 'New Combustion Concept for Ultra-Clean and High-Efficiency Small DI Diesel Engines', SAE Paper 1999-01-3669, 1999
  4. 성경훈, 박승범, 선우명호, 나형규, 'HSDI Common-rail 인젝터 모델링 및 니들 변위 추정에 관한 연구', 한국자동차공학회지, 제10권, 제1호, pp.59-61, 2002
  5. C. Pettes and A. Leipertz, 'Potentials of a Piezo-Driven Passenger car Common Rail System to meet Future Emission Legislation - An Evaluation by Meas of In-Cylinder Analysis of Injection and Combustion', SAE Paper 2001-01-3499, 2001