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首页> 外文期刊>International Journal of Automotive Technology >ACCUMULATED TOLERANCE ANALYSIS OF SUSPENSION BY GEOMETRIC TOLERANCES BASED ON MULTIBODY ELASTO-KINEMATIC ANALYSIS
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ACCUMULATED TOLERANCE ANALYSIS OF SUSPENSION BY GEOMETRIC TOLERANCES BASED ON MULTIBODY ELASTO-KINEMATIC ANALYSIS

机译:基于多体弹性运动学分析的悬架累积公差分析

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摘要

Tolerance design of vehicle suspension is an important factor that affects the ride and handling quality and cost of the vehicle. Also, applying geometric tolerance to an analysis model is found to be a difficult process. This paper presents a method for tolerance analysis of wheel alignment of vehicle suspension. Monte-Carlo simulation method is applied to multibody elasto-kinematic model to analyze the accumulated geometric tolerances. As an example, Macpherson Strut Type front half car model is used, and wheel alignment dispersion and contribution ratio to the dispersion by accumulated geometric tolerances is computed. This paper also presents an efficient modeling and analysis method for elasto-kinematic model of vehicle suspensions by computing the stiffness matrix analytically. The simulation results of a Macpherson Strut Type demonstrates the validity and accuracy of the proposed method.
机译:车辆悬架的公差设计是影响车辆行驶和操纵质量以及成本的重要因素。同样,将几何公差应用于分析模型也发现是一个困难的过程。本文提出了一种用于车辆悬架车轮定位公差分析的方法。将蒙特卡洛仿真方法应用于多体弹性运动模型,分析累积的几何公差。例如,使用Macpherson Strut Type前半车模型,并通过累积的几何公差计算车轮定位偏差和对偏差的贡献率。本文还通过分析计算刚度矩阵,提出了一种有效的车辆悬架弹性运动学建模与分析方法。 Macpherson Strut类型的仿真结果证明了该方法的有效性和准确性。

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