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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Estimation of body input force transmission change due to parts' modification using the impedance method under rolling excitation
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Estimation of body input force transmission change due to parts' modification using the impedance method under rolling excitation

机译:轧制激励下的阻抗法因零件改造而估计体内输入力传输变化

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This study aims to estimate the change in suspension to body input force transmission due to the softening of the connecting elastomer under rolling excitation. In this respect, the suspension coupled to a vehicle body via an elastomer bushing is modeled using point impedance. A numerical study is performed for achievable force reduction due to a softened bush under the influence of different impedance combinations for the suspension and the vehicle body. Following a numerical study, the proposed model is validated through empirical testing of McPherson strut type suspension in the lateral arm Y direction and multilink type rear suspension in the front mount X direction, which represent extremely stiff and extremely soft coupling cases for the suspension type, respectively. Due to the difficulties in measuring road-induced operational forces within an actual vehicle, a validation test is performed using a previously developed rig that enables direct measurement of the force without modifying the structure of the suspension. Additionally, the rig-measured force, which is potentially misleading due to the large deviation in stiffness between the rig and an actual vehicle, is investigated under varying combinations of suspension and bush stiffness.
机译:本研究旨在由于轧制激励下的连接弹性体软化,估计悬架对体内输入力传递的变化。在这方面,使用弹性体衬套耦合到车身的悬浮液使用点阻抗建模。在不同阻抗组合对悬架和车身的影响下,对可实现的力减少进行数值研究。在数值研究之后,通过在横向臂Y方向上的Mcpherson Strut型悬架和前安装X方向上的多链轮型后悬架的经验测试来验证所提出的模型,其代表悬架型极硬且极其软的耦合盒,分别。由于在实际车辆内测量道路诱导的操作力的困难,使用先前开发的钻井进行验证测试,该钻机能够直接测量力而不改变悬架的结构。另外,在不同组合的悬架和衬套刚度的不同组合下研究了由于钻机和实际车辆之间的刚度较大而导致的钻机测量力。

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