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Mathematical modelling and experimental validation of mono-tube shock absorber

机译:单管减震器的数学建模与实验验证

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摘要

Purpose - The work presented in this paper is concerned with mathematical modeling and experimental validation of mono-tube shock absorber. This paper aims to create damper model to predict accurately damping force, and experimental analysis is done by varying the various parameters, such as flow area in bleed(Ab), mass (M) and operating frequency(?). Design/methodology/approach - Here, input is given in the form of sinusoidal excitation, and the output is received as a numerical data of the displacement transmissibility. These data are then processed to get the values of transmissibility and magnification factor for various frequency ratios. They are then plotted to have transmissibility and frequency response curves, as it is a generally accepted measure of how well the system is isolated from its surroundings. Findings - It is better to have low transmissibility (larger bleed area), for lower suspension velocity, as it will reduce maximum acceleration transmitted to the sprung mass. However, for higher suspension velocity, bleed area should be low (higher transmissibility) to reduce displacement of tyre from road. Originality/value - The development of faster vehicles and also the requirements of smoother and more comfortable rides have led to the fitment of dampers on almost on all present day vehicles. Shock absorbers have a significant influence on handling performance and riding comfort. Shock absorber plays an important role not only for comfort of the riders of the vehicle but also in the performance and life of the vehicle. However, no further reduction of vehicle vibration can be expected for using the optimum values of damping coefficient and spring stiffness for the shock absorber. Thus, it is necessary to make modification to improve the functions of shock absorber.
机译:目的-本文提出的工作涉及单管减震器的数学建模和实验验证。本文旨在创建阻尼器模型以准确预测阻尼力,并通过改变各种参数来进行实验分析,例如泄放面积(Ab),质量(M)和工作频率(η)。设计/方法/方法-在此,输入以正弦激励形式给出,并且输出作为位移传递率的数值数据接收。然后对这些数据进行处理,以获得各种频率比的透射率和放大系数值。然后将它们绘制为具有透射率和频率响应曲线,因为这是系统与周围环境隔离程度的公认标准。发现-较低的透射率(较大的排泄面积)最好,以降低悬架速度,因为它会减小传递到弹簧上的最大加速度。但是,对于较高的悬架速度,泄气面积应较小(较高的可传递性),以减少轮胎从路面的位移。原创性/价值-更快的车辆的发展以及对更平稳,更舒适的行驶的要求导致阻尼器几乎安装在当今的所有车辆上。减震器对操纵性能和乘坐舒适性有重大影响。减震器不仅对于车辆驾驶员的舒适性而且在车辆的性能和寿命中都起着重要的作用。然而,对于减震器使用阻尼系数和弹簧刚度的最佳值,不能期望进一步减小车辆振动。因此,有必要进行修改以改善减震器的功能。

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