首页> 外文期刊>Advances in Tribology >Mechanical Hybrid KERS Based on Toroidal Traction Drives: An Example of Smart Tribological Design to Improve Terrestrial Vehicle Performance
【24h】

Mechanical Hybrid KERS Based on Toroidal Traction Drives: An Example of Smart Tribological Design to Improve Terrestrial Vehicle Performance

机译:基于环形牵引驱动器的机械混合动力KERS:提高地面车辆性能的智能摩擦学设计示例

获取原文
           

摘要

We analyse in terms of efficiency and traction capabilities a recently patented traction drive, referred to as the double roller full-toroidal variator (DFTV). We compare its performance with the single roller full-toroidal variator (SFTV) and the single roller half-toroidal variator (SHTV). Modeling of these variators involves challenging tribological issues; the traction and efficiency performances depend on tribological phenomena occurring at the interface between rollers and disks, where the lubricant undergoes very severe elastohydrodynamic lubrication regimes. Interestingly, the DFTV shows an improvement of the mechanical efficiency over a wide range of transmission ratios and in particular at the unit speed ratio as in such conditions in which the DFTV allows for zero-spin, thus strongly enhancing its traction capabilities. The very high mechanical efficiency and traction performances of the DFTV are exploited to investigate the performance of a flywheel-based Kinetic Energy Recovery System (KERS), where the efficiency of the variator plays an important role in determining the overall energy recovery performance. The energy boost capabilities and the round-trip efficiency are calculated for the three different variators considered in this study. The results suggest that the energy recovery potential of the mechanical KERS can be improved with a proper choice of the variator.
机译:我们在效率和牵引能力方面分析了最近获得专利的牵引驱动器,称为双辊全环形变速器(DFTV)。我们将其性能与单辊全环形变速器(SFTV)和单辊半环形变速器(SHTV)进行比较。这些变量的建模涉及挑战性的摩擦学问题。牵引性能和效率性能取决于在滚子和盘之间的界面处发生的摩擦学现象,在该现象下,润滑剂经历了非常严格的弹性流体动力润滑方式。有趣的是,在DFTV允许零旋转的情况下,DFTV在较宽的传动比范围内,特别是在单位速度比下,显示出机械效率的提高,从而极大地增强了其牵引力。 DFTV的极高机械效率和牵引性能被用于研究基于飞轮的动能回收系统(KERS)的性能,其中变速器的效率在确定总体能量回收性能中起着重要作用。针对本研究中考虑的三个不同的变量,计算了能量提升能力和往返效率。结果表明,机械KERS能量回收潜力可以与变速器的正确选择得到改善。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号