用田口法研究直线模型车辆的悬架特性

N. Stojanović, M. Jweeg, I. Grujić, M. Petrović, Sami Muhsen, O. Abdullah
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引用次数: 0

摘要

悬架系统可以认为是车辆中最重要的系统之一。其中负责车辆结构在道路和弯道上的稳定性和平衡性,保证乘客的舒适性。此外,它还能吸收路面不平整造成的冲击,防止冲击到达驾驶室。为了得到簧载质量的最小位移水平,研究了悬架结构参数的影响。以下控制参数是簧载刚度、非簧载质量和簧载质量的阻尼。应用方差分析(ANOVA)确定了对簧载质量位移影响最大的参数。利用MATLAB/SIMULINK软件进行调查,建立了四分之一车身的直线模型。结果表明,弹簧刚度对弹簧质量位移的影响最为显著,进而影响车辆的舒适性。
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An Investigation of the Suspension Characteristics of the Line Model of the Vehicle Using the Taguchi Method
Abstract It can be considered that the suspension system is one of the most important systems in the VEHICLE. Where it is responsible for the stability and balance of the vehicle’s structure on the roads and curves to ensure the comfort of passengers. Also, it absorbs the shocks resulting from the unevenness of the road and prevents it from reaching the wheelhouse. The influence of the suspension constructive parameters in order to obtain the smallest level of displacements of the sprung mass has been investigated. The following control parameters are the stiffness of the sprung, unsprung mass, and the damping of the sprung mass. The parameter which affects most displacements of the sprung mass was determined by applying the analysis of variance (ANOVA). The investigation was conducted using MATLAB/SIMULINK software, and a line model of a quarter of the vehicle was created. It was determined that the stiffness of sprung has the most significant influence on the displacement of the sprung-mass, which further affect the vehicle’s comfort.
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来源期刊
International Journal of Applied Mechanics and Engineering
International Journal of Applied Mechanics and Engineering Engineering-Civil and Structural Engineering
CiteScore
1.50
自引率
0.00%
发文量
45
审稿时长
35 weeks
期刊介绍: INTERNATIONAL JOURNAL OF APPLIED MECHANICS AND ENGINEERING is an archival journal which aims to publish high quality original papers. These should encompass the best fundamental and applied science with an emphasis on their application to the highest engineering practice. The scope includes all aspects of science and engineering which have relevance to: biomechanics, elasticity, plasticity, vibrations, mechanics of structures, mechatronics, plates & shells, magnetohydrodynamics, rheology, thermodynamics, tribology, fluid dynamics.
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