Dynamic analysis of vehicle propulsion group with nonlinear characteristics of supports and arbitrary motion of the car body

被引:5
|
作者
Kojic, M [1 ]
Obradovic, D [1 ]
Bogdanovic, Z [1 ]
机构
[1] Automobile Inst ZASTAVA, YU-34000 Kragujevac, Serbia, Yugoslavia
关键词
dynamic analysis; nonlinear elastic characteristics; vibration;
D O I
10.1504/IJVD.2001.005222
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The propulsion group of a vehicle is considered as a rigid body with six degrees of freedom, subjected to arbitrary loading and support action. The propulsion group motion consists of the given car body motion and of the relative motion with respect to the car body. The support elastic characteristics are nonlinear and defined for the principal axes of each support. Viscous damping at the supports, proportional to the square root of the current stiffness of each support, is taken into account. The nonlinear differential equations of motion are derived without any simplification. Then, the Newton integration scheme is implemented and a system of incremental-iterative algebraic equations is formed. The only approximation adopted is neglect of products of the rotation increments in the current iteration. The developed software provides static, dynamic and frequency analysis for general description of nonlinear elastic characteristics of supports, car-body motion, damping and loadings. Some numerical examples, typical for the real working conditions of the propulsion group, are given to illustrate applicability of the developed methodology and software. Dynamic response which includes displacements and rotations, as well as the support reactions, are graphically presented in the paper.
引用
收藏
页码:523 / 540
页数:18
相关论文
共 50 条
  • [21] ANALYSIS OF NONLINEAR DYNAMIC CURVING OF RAIL VEHICLE
    SHE, M
    ZHAN, FS
    XIA, XM
    VEHICLE SYSTEM DYNAMICS, 1988, 17 : 403 - 406
  • [22] Nonlinear Modeling and analysis of vehicle planar motion dynamics
    Wang, SP
    Yang, PH
    2005 IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS, 2005, : 90 - 95
  • [23] Analysis of motion of the body of a motor car hit on its side by another passenger car
    Gidlewski, M.
    Prochowski, L.
    SCIENTIFIC CONFERENCE ON AUTOMOTIVE VEHICLES AND COMBUSTION ENGINES (KONMOT 2016), 2016, 148
  • [24] Nonlinear brake control of a Formula 1 racing car and the small step to nonlinear vehicle dynamic control
    Sigillo, Michele
    Zurbuchen, Marc
    Spagnol, Davide
    10TH INTERNATIONAL MUNICH CHASSIS SYMPOSIUM 2019 (CHASSIS.TECH PLUS), 2020, : 369 - 385
  • [25] TLP surge motion: A nonlinear dynamic analysis
    Amat, S.
    Legaz, M. J.
    PROGRESS IN MARITIME TECHNOLOGY AND ENGINEERING, 2018, : 641 - 645
  • [26] Motion Simulation and Force Analysis in Built Car Dynamic Model
    Shi, Yuan
    Xu, Wentao
    2021 2ND INTERNATIONAL CONFERENCE ON INTELLIGENT DESIGN (ICID 2021), 2021, : 352 - 364
  • [27] NONLINEAR STABILITY ANALYSIS OF VEHICLE LATERAL MOTION WITH A HYBRID PHYSICAL/DYNAMIC TIRE/ROAD FRICTION MODEL
    Yi, Jingang
    Tseng, Eric H.
    PROCEEDINGS OF THE ASME DYNAMIC SYSTEMS AND CONTROL CONFERENCE 2009, PTS A AND B, 2010, : 509 - 516
  • [28] Analytical analysis approach to nonlinear dynamic characteristics of hydraulically damped rubber mount for vehicle engine
    Wang, Li-Rong
    Lu, Zhen-Hua
    Hagiwara, Ichiro
    NONLINEAR DYNAMICS, 2010, 61 (1-2) : 251 - 264
  • [29] Analytical analysis approach to nonlinear dynamic characteristics of hydraulically damped rubber mount for vehicle engine
    Li-Rong Wang
    Zhen-Hua Lu
    Ichiro Hagiwara
    Nonlinear Dynamics, 2010, 61 : 251 - 264
  • [30] Analysis of shell dynamic characteristics of underwater vehicle
    Fang, Kai-Xiang
    Zhang, Yi
    Huadong Chuanbo Gongye Xueyuan Xuebao/Journal of East China Shipbuilding Institute, 2002, 16 (05):