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Kineto-dynamic Performance Analysis of Vehicle with an Asymmetric Suspension Damper using a Roll-Plane Model

机译:基于侧倾平面模型的非对称悬架减振器的动力学性能分析

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摘要

This paper concerns with the study of influences of damper asymmetry together with the suspension kinematics and tire lateral compliance on the kineto-dynamic responses of a roll-plane half-car model. Such coupled analysis of kinematic and vertical and roll dynamic measures of the vehicle involving asymmetric suspension dampers has not been reported in the literature. A 4-DOF, roll-plane model of the road vehicle employing a double wishbone type suspension comprising a strut with linear spring and asymmetric damper is formulated for the analyses. The influences of asymmetric dampers are studied by comparing the sprung mass vertical acceleration, chassis roll angle and the dynamic tire forces, and the left- and right tires camber angle variation responses of the model with asymmetric dampers with those of the model with an equivalent linear damper under bump and pothole inputs. The influences of damper asymmetry are also investigated under rounded-step lateral excitations. The results of the study suggested that the responses are complex functions of damper asymmetry ratio, defined as the ratio of damping coefficient in rebound to that in compression, vehicle forward speed and type of input. The study further suggests that a very low compression mode damping is undesirable from both ride and handling dynamic perspectives.
机译:本文涉及减振器不对称性的影响以及悬架运动学和轮胎侧向柔度对侧倾式半车模型运动动力响应的影响的研究。在文献中还没有报道涉及不对称悬架减震器的车辆的运动学,垂直运动和侧倾动力学测量的这种耦合分析。为分析建立了采用双叉骨型悬架的道路车辆的4自由度侧倾平面模型,该悬架包括带有线性弹簧和不对称阻尼器的支柱。通过比较簧上质量垂直加速度,底盘侧倾角和动态轮胎力以及非对称阻尼器模型与等效线性模型的左右轮胎外倾角变化响应,研究了非对称阻尼器的影响。颠簸和坑洼输入下的风门。阻尼器不对称性的影响也进行了圆角横向激励的研究。研究结果表明,响应是阻尼器不对称比的复杂函数,阻尼比不对称比定义为回弹阻尼系数与压缩系数的比值,车辆前进速度和输入类型。该研究进一步表明,从行驶角度和操纵动态角度来看,非常低的压缩模式阻尼都是不可取的。

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