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Parametric Analysis of Magnetorheological Strut for Semiactive Suspension System Using Taguchi Method

机译:田口法半主动悬架磁流变支撑参数分析。

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Magnetorheological (MR) strut is among the leading advanced applications of semi-active suspension systems. The damping force of MR damper is controlled by varying the viscosity of MR fluid. In this work, the viscosity of MR damper varies by changing the current from 0.5A to 0.7A. The design of experiments is taken into account in concert with the product/process development as one completely advanced tool. The parameters used for ride comfort optimization are sprung mass, spring stiffness, tire pressure, current, and cylinder material with two levels of each. Taguchi orthogonal array method is used to select the best results by parameter optimization with a minimum number of test runs. In this paper, from Taguchi L16 array and S/N ratio analysis, it is observed that the cylinder material with Al and CS for damper cylinder is a key parameter for performance measure of semi-active suspension system. From regression analysis, a linear mathematical model is developed for Al and CS as cylinder materials. The interaction of cylinder materials with all four parameters is plotted. The methodology implemented for measurement of acceleration as a ride comfort is as per IS 2631-1997. The more economical model of magnetorheological damper will motivate Indian auto industry to broader applications.
机译:磁流变(MR)支柱是半主动悬挂系统的领先先进应用之一。 MR阻尼器的阻尼力是通过改变MR流体的粘度来控制的。在这项工作中,通过将电流从0.5A更改为0.7A,MR阻尼器的粘度会发生变化。作为一种完全先进的工具,与产品/工艺开发相结合地考虑了实验设计。用于优化乘坐舒适性的参数是弹簧质量,弹簧刚度,轮胎压力,电流和气缸材料,每个都有两个级别。 Taguchi正交阵列方法用于通过参数优化和最少的测试运行次数来选择最佳结果。本文通过田口L16阵列和信噪比分析,发现阻尼器气缸的Al和CS气缸材料是衡量半主动悬架系统性能的关键参数。通过回归分析,开发了用于Al和CS作为气缸材料的线性数学模型。绘制了圆柱体材料与所有四个参数的相互作用。根据IS 2631-1997,用于测量加速度作为行驶舒适性的方法。磁流变阻尼器的更经济的模型将激励印度汽车工业更广泛的应用。

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