首页> 外文会议>International Mechanical Engineering Congress and Exposition >FUEL CONSUMPTION REDUCTION OF OFF-ROAD VEHICLES BY IMPROVING THE EFFICIENCY OF THE HYDROMECHANICAL VARIABLE TRANSMISSION'S LUBRICATION AND ACTUATION SYSTEMS
【24h】

FUEL CONSUMPTION REDUCTION OF OFF-ROAD VEHICLES BY IMPROVING THE EFFICIENCY OF THE HYDROMECHANICAL VARIABLE TRANSMISSION'S LUBRICATION AND ACTUATION SYSTEMS

机译:通过提高流体力学可变变速箱润滑和致动系统的效率来燃油消耗减少越野车辆

获取原文

摘要

The paper investigates the efficiency of a hydro-mechanical variable transmission combining experimental and numerical approaches in order to develop operating strategies for power transmission losses reduction due to hydraulic circuits design. Two operating regions, characterized by high working time, have been detected analyzing the telescopic boom handler load spectral map of a real off-road vehicle transmission; the first one characterized by high output speed and the second one by low speed and torque transmission. The efficiency of the former region has been increased by improving the fluid dynamic behavior of the lubrication system, which is greatly affected by the high flow rate generated by the fixed displacement pump operating at high speed, while the latter has been improved regulating the flow pressure of the actuation system with a controlled relief valve. The power losses of the system are experimentally determined testing an instrumented transmission on an ad-hoc test rig. CFD dynamic models are adopted for the lubrication circuit optimization, addressing its real geometrical features as well as the actual operating conditions. Furthermore, the influence of the hydrodynamic resistance of the reverse and first wet clutches on the transmission power losses is investigated regulating the lubrication flow through an on/off valve. Tests demonstrated that up to 6.5 kWcan be saved at high transmission ratios. Finally, the effect of the two regulating strategies have been estimated in terms of energy saving and C02 emission reduction on the total vehicle life. Results proved that 5600 kWh and 7250 kWh saved energy can be achieved for the two strategies corresponding to 3.7 tons and 4.6 tons of avoided CO2 respectively.
机译:本文研究了水力机械可变变速器的效率结合了实验性和数值方法,以开发由于液压电路设计引起的电力传输损耗的运行策略。已经检测到具有高工作时间的两个操作区域,分析了实际越野车辆变速器的伸缩动臂处理谱图;第一个以低速和扭矩传递为特征在于高输出速度和第二个。通过改善润滑系统的流体动力学行为来增加前部区域的效率,这受到高速运行的固定位移泵产生的高流速的大大影响,而后者已经改善了调节流量控制浮雕阀的致动系统。系统的功率损耗是通过实验确定在Ad-hoc测试台上进行仪表传输的测试。 CFD动态模型用于润滑电路优化,解决其实际几何特征以及实际操作条件。此外,研究了逆转和第一湿法离合器对传输功率损耗的影响,通过开/关阀调节润滑流动。测试证明,高达6.5克尔曼以高传输比率保存。最后,在节能和C02排放量减少了两种调节策略的效果。结果证明,对于对应于3.7吨和4.6吨避免的二氧化碳,可以实现5600千瓦时和7250千瓦时的能量。

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