Aiming at the problem of poor injection stability and
low precision of quantity control caused by poor monotonicity of MAP for common
rail injector under the small fuel quantity condition, an AMESim simulation
model of injector was established to analyze the motion state of solenoid valve
and needle valve under the small fuel quantity condition. It was concluded that
the reason of MAP poor monotonicity was that the needle valve opened before the
solenoid valve completed collision with the electromagnet. With the increase of
the pulse width, the speed of the solenoid valve changed suddenly when the
solenoid valve collided with the electromagnet by its own inertia, which led to
the decrease for the closing delay of solenoid valve and needle valve and a
consequent decrease in circulating injection volume. Therefore, the MAP of
injector with small fuel quantity was optimized by reducing the opening time of
solenoid valve and increasing the opening delay of needle valve. Finally, the
scheme of increasing the diameter of sealing conical surface from needle valve
was used, which not only optimized the injection performance of small fuel
quantity condition, but also decreased the injection duration of rated load.
LI Chunhui, WU Xiaojun, YANG Guichun, ZHANG Ziwei, WANG Qi.
Optimization of Common Rail Injector Performance under
Small Fuel Quantity Condition[J]. Vehicle Engine. 2025, 0(2): 24 https://doi.org/10.3969/j.issn.1001-2222.2025.02.004