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Analytical model for combined ride and handling with leaf spring suspension in commercial vehicles

机译:商用车钢板弹簧悬架的组合行驶和操控分析模型

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摘要

Ride comfort and handling are very important characteristics that influence a customer's decision to purchase a vehicle. Hence designing the suspension characteristics to improve the ride and handling performances is very crucial. During the product development cycle, the suspension system parameters are optimised through a number of iterations using design simulation tools such as ADAMS, TruckSim, etc. before the actual prototype is developed. The simulation time for iterations in these design-simulation tools is very high. In the present paper, an attempt has been made to reduce the iteration time by developing an analytical model in MATLAB for combined vertical and lateral dynamics simulation with 11 degrees of freedom. The suspension system, i.e., rigid leaf spring, is transformed into a three-link mechanism by the two-point deflection method as described in the SAE AE-II spring design manual. The simulation results correlated well with the ADAMS/Car simulation results.
机译:乘坐舒适性和操控性是影响客户购买车辆决定的非常重要的特征。因此,设计悬架特性以改善行驶和操控性能非常重要。在产品开发周期中,在开发实际原型之前,使用设计仿真工具(如 ADAMS、TruckSim 等)通过多次迭代来优化悬架系统参数。这些设计仿真工具的迭代仿真时间非常长。本文试图通过在MATLAB中开发一个解析模型来减少迭代时间,该模型用于11个自由度的垂直和横向动力学组合仿真。悬挂系统,即刚性钢板弹簧,通过SAE AE-II弹簧设计手册中描述的两点偏转方法转变为三连杆机构。仿真结果与ADAMS/Car仿真结果吻合较好。

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