TY - JOUR
T1 - Simulation of Assembly Tolerance and Characteristics of High Pressure Common Rail Injector
AU - Lu, Jiping
AU - Tang, Shuiyuan
AU - Zhou, Yong
AU - Hong, Jing
AU - Jian, Zhonghua
N1 - Publisher Copyright:
© 2017, Atlantis Press.
PY - 2011/12
Y1 - 2011/12
N2 - Fuel injector is the key part of a high-pressure common rail fuel injection system. Its manufacturing precision and assembly quality affect system’s property and performance. According to the characteristics and demands of assembly of the fuel injector, an intelligent optimization algorithm is proposed to resolve the problem of assembly sequence planning. Based on geometric modeling, assembly dimension chain of the injector control chamber is established, and the relationship between assembly tolerance and volume change of control chamber is analyzed. The optimization model of the assembly is established. The impact of assembly tolerance on injector’s performance is simulated according to the optimization algorithm. The simulation result shows that quantity of injection fuel changes correspondingly with the change of assembly tolerance, while injection rate and pressure do not change significantly, and the response rate of needle considerably slow. Similarly, the leakage rate of fuel in control chamber is calculated, indicating that the assembly tolerance has obvious impact on fuel leakage and its rate. The study illuminates that injector’s assembly tolerance has prominent effect on injection.
AB - Fuel injector is the key part of a high-pressure common rail fuel injection system. Its manufacturing precision and assembly quality affect system’s property and performance. According to the characteristics and demands of assembly of the fuel injector, an intelligent optimization algorithm is proposed to resolve the problem of assembly sequence planning. Based on geometric modeling, assembly dimension chain of the injector control chamber is established, and the relationship between assembly tolerance and volume change of control chamber is analyzed. The optimization model of the assembly is established. The impact of assembly tolerance on injector’s performance is simulated according to the optimization algorithm. The simulation result shows that quantity of injection fuel changes correspondingly with the change of assembly tolerance, while injection rate and pressure do not change significantly, and the response rate of needle considerably slow. Similarly, the leakage rate of fuel in control chamber is calculated, indicating that the assembly tolerance has obvious impact on fuel leakage and its rate. The study illuminates that injector’s assembly tolerance has prominent effect on injection.
KW - assembly tolerance
KW - high pressure common rail
KW - intelligent optimization algorithm
KW - simulation
UR - http://www.scopus.com/inward/record.url?scp=85183319847&partnerID=8YFLogxK
U2 - 10.2991/ijcis.2011.4.6.20
DO - 10.2991/ijcis.2011.4.6.20
M3 - Article
AN - SCOPUS:85183319847
SN - 1875-6891
VL - 4
SP - 1282
EP - 1289
JO - International Journal of Computational Intelligence Systems
JF - International Journal of Computational Intelligence Systems
IS - 6
ER -