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An investigation into the effect of suspension configurations on the performance of tracked vehicles traversing bump terrains

机译:悬架配置对横跨凹凸地形追踪车辆性能影响的调查

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摘要

This is a theoretical investigation into the effect of various suspension configurations on a tracked vehicle performance over bump terrains. The model developed is validated using published experimental data of the modal characteristics of the vehicle. The desired performance is based on ride comfort via the mixed objective function (MOF), which combines the crest factor of bounce acceleration, bounce displacement, angular acceleration, and pitch angle. The optimisation process involves evaluating the MOF for different numbers and locations of dampers and under different rigid bump road conditions and speeds. The system responses of the selected suspension configurations in the time and frequency domains are compared against the undamped suspension. The results show that the suspension configurations have a significant effect on the vehicle mobility over bump road profiles. For a five-road-wheel half model of a tracked vehicle, the maximum number of dampers to use for ride comfort over these road bumps is three with the dampers located at wheel positions 1, 2 and 5. This confirms the current practice for many tracked vehicles with 10 road wheels. However, it is further shown that the suspension fitted with two dampers at the extreme road wheels offer the best performance over various rigid bump terrains.
机译:这是一个理论探讨各种悬浮液的配置超过凸块地形履带式车辆性能的影响。开发的模型使用的车辆的模态特性发表的实验数据进行了验证。期望的性能是通过混合目标函数(MOF),它结合了反弹加速度,反弹位移,角加速度,和桨距角的波峰因数基于乘坐舒适性。优化过程涉及评估的不同数量和阻尼器的位置和不同的刚性凸起的路况和速度下的财政部。在时域和频域中所选择的悬浮液配置的系统响应是针对无阻尼悬浮液进行比较。结果表明,该悬架配置有超过凹凸路面轮廓在车辆移动性的显著效果。用于履带车辆的五道轮一半的模式,阻尼器使用了乘坐的舒适性在这些路面颠簸的最大数目为3与位于车轮位置1,2和5这证实了目前的做法对于许多阻尼器履带车与10路轮。但是,进一步表明悬架配备在极端车轮两个阻尼器提供了各种刚性凸起地形的最佳性能。

著录项

  • 作者

    W.G. Ata; S.O. Oyadiji;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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