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Roll- and pitch-plane-coupled hydro-pneumatic suspension. Part 2 dynamic response analyses

机译:横滚和俯仰平面耦合的油气悬架。第2部分动态响应分析

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摘要

In the first part of this study, the potential performance benefits of fluidically coupled passive suspensions were demonstrated through analyses of suspension properties, design flexibility and feasibility. In this second part of the study, the dynamic responses of a vehicle equipped with different configurations of fluidically coupled hydro-pneumatic suspension systems are investigated for more comprehensive assessments of the coupled suspension concepts. A generalised 14 degree-of-freedom nonlinear vehicle model is developed and validated to evaluate vehicle ride and handling dynamic responses and suspension anti-roll and anti-pitch characteristics under various road excitations and steering/braking manoeuvres. The dynamic responses of the vehicle model with the coupled suspension are compared with those of the unconnected suspensions to demonstrate the performance potential of the fluidic couplings. The dynamic responses together with the suspension properties suggest that the full-vehicle-coupled hydro-pneumatic suspension could offer considerable potential in realising enhanced ride and handling performance, as well as improved anti-roll and anti-pitch properties in a very flexible and energy-saving manner.
机译:在本研究的第一部分中,通过对悬架特性,设计灵活性和可行性的分析,证明了流体耦合被动悬架的潜在性能优势。在研究的第二部分中,对配备有不同配置的液力耦合式油气悬架系统的车辆的动力响应进行了研究,以便对耦合式悬架概念进行更全面的评估。开发并验证了通用的14自由度非线性车辆模型,以评估车辆在各种道路激励和转向/制动动作下的行驶和操纵动态响应以及悬架抗侧倾和反俯仰特性。将具有连接的悬架的车辆模型的动态响应与未连接的悬架的动态响应进行比较,以证明流体连接的性能潜力。动力响应以及悬架性能表明,全车辆耦合的油气悬架可以在提高灵活性和节能性方面提供巨大的潜力,以实现增强的行驶和操纵性能,以及改善的防侧倾和防俯仰性能-节省方式。

著录项

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-20 20:14:19

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