TY - JOUR
T1 - Investigation on the Deformation of Injector Components and Its Influence on the Injection Process
AU - Xu, Dan
AU - Sun, Baigang
AU - Yang, Qing
AU - Wu, Dongwei
N1 - Publisher Copyright:
© 2020 SAE International. All Rights Reserved.
PY - 2020/4/14
Y1 - 2020/4/14
N2 - The deformation of injector components cannot be disregarded as the pressure of the system increases. Deformation directly affects the characteristics of needle movement and injection quantity. In this study, structural deformation of the nozzle, the needle and the control plunger under different pressures is calculated by a simulation model. The value of the deformation of injector components is calculated and the maximum deformation location is also determined. Furthermore, the calculated results indicates that the deformation of the control plunger increases the control chamber volume and the cross-section area between the needle and the needle seat. A MATLAB model is established to The influence of structural deformation on needle movement characteristics and injection quantity is investigate by a numerical model. The results show that the characteristic points of needle movement are delayed and injection quantity increases due to the deformation. Furthermore, the degree of the two effects increases with pressure. Therefore, this paper completes the numerical calculation model of the injector and provides guidance for accurate injection under high pressure.
AB - The deformation of injector components cannot be disregarded as the pressure of the system increases. Deformation directly affects the characteristics of needle movement and injection quantity. In this study, structural deformation of the nozzle, the needle and the control plunger under different pressures is calculated by a simulation model. The value of the deformation of injector components is calculated and the maximum deformation location is also determined. Furthermore, the calculated results indicates that the deformation of the control plunger increases the control chamber volume and the cross-section area between the needle and the needle seat. A MATLAB model is established to The influence of structural deformation on needle movement characteristics and injection quantity is investigate by a numerical model. The results show that the characteristic points of needle movement are delayed and injection quantity increases due to the deformation. Furthermore, the degree of the two effects increases with pressure. Therefore, this paper completes the numerical calculation model of the injector and provides guidance for accurate injection under high pressure.
UR - http://www.scopus.com/inward/record.url?scp=85083842088&partnerID=8YFLogxK
U2 - 10.4271/2020-01-1398
DO - 10.4271/2020-01-1398
M3 - Conference article
AN - SCOPUS:85083842088
SN - 0148-7191
VL - 2020-April
JO - SAE Technical Papers
JF - SAE Technical Papers
IS - April
T2 - SAE 2020 World Congress Experience, WCX 2020
Y2 - 21 April 2020 through 23 April 2020
ER -