首页> 外文会议>American Society of Mechanical Engineers(ASME) Internal Combustion Engine Division Fall Technical Conference(ICEF 2004); 20041024-27; Long Beach,CA(US) >THE FRICTION REDUCTION WITH A NEW TWO-PIECE SPRING RETAINER DESIGN AND LIGHT WEIGHT VALVE TRAIN COMPONENTS IN SI ENGINES
【24h】

THE FRICTION REDUCTION WITH A NEW TWO-PIECE SPRING RETAINER DESIGN AND LIGHT WEIGHT VALVE TRAIN COMPONENTS IN SI ENGINES

机译:新型两件式弹簧保持架设计和SI型发动机的轻量化阀系组件的摩擦降低

获取原文
获取原文并翻译 | 示例

摘要

The reduction of friction in the valve train of four-stroke combustion engines is a promising opportunity to decrease fuel consumption and to improve pollutant emissions. The possibilities are reviewed by comparing light weight and newly developed components. The friction in the valve train causes a loss from the BMEP by about 0.2 to 0.4 bar. To measure friction forces in this range requires constant and well maintained environmental conditions. The viscosity as well as the pressure and temperature of the lubricating oil have a big influence on the friction. Due to the valve spring forces a strong fluctuation of the cam torque appears. This makes it very demanding to set up the measurement equipment in a correct way. Measurement equipment which is able to gauge with sufficient accuracy may be overloaded by the effects caused by the spring forces. Based on this special care is necessary during the first ramp up of the cylinder head. It has to be modified to avoid overloading the measurement equipment. One possibility to achieve lower friction between the valve stem and the valve guide is the reduction of the lateral forces which are caused by the asymmetry of the valve spring. Using recently new developed components these detrimental forces within a valve train can be reduced which leads to lower friction losses. In addition the wear between the valve train components can be reduced. In detail this can be accomplished by using two-piece spring retainer which allows a tilted position of the spring end during the valve lift and by this only allow axial forces to act onto the valve. The friction in a valve train using a direct acting mechanical tappet is mainly caused by the sliding contact of the cam on the tappet face. To lower the friction in this area the spring forces have to be reduced. This requires valve train components with lower masses and weaker springs. Therefore valves, spring retainers and tappets made from light weight alloys where developed. The mass of these light weight components could be reduced by more than 50%. Detailed measurements are performed and the results will he presented. As a conclusion it can be seen, what light weight components in the valve train of four stroke engines can contribute to a torque reduction in innovative valve trains.
机译:减少四冲程内燃机的气门机构中的摩擦是减少燃料消耗和改善污染物排放的有希望的机会。通过比较轻量级和新开发的组件来审查可能性。气门机构中的摩擦导致BMEP损失约0.2至0.4 bar。要测量此范围内的摩擦力,需要恒定且保持良好的环境条件。润滑油的粘度以及压力和温度对摩擦有很大影响。由于气门弹簧力,凸轮扭矩出现了很大的波动。这就要求以正确的方式设置测量设备。能够以足够的精度进行测量的测量设备可能会由于弹簧力的作用而过载。基于此,在气缸盖的第一次斜升过程中需要特别注意。必须对其进行修改以避免测量设备过载。实现阀杆和阀导向件之间较小摩擦的一种可能性是减小由阀弹簧的不对称性引起的侧向力。使用最新开发的组件,可以减少气门机构内的这些有害力,从而降低摩擦损耗。另外,可以减少气门机构部件之间的磨损。详细地,这可以通过使用两件式弹簧保持器来实现,该弹簧保持器在气门升程期间允许弹簧端倾斜的位置,并且这仅允许轴向力作用在气门上。使用直动式机械挺杆的气门机构中的摩擦主要是由于凸轮在挺杆面上的滑动接触引起的。为了降低该区域的摩擦,必须减小弹簧力。这就要求气门机构部件的质量较低,弹簧强度较弱。因此,开发了由轻质合金制成的阀,弹簧座和挺杆。这些轻质组分的质量可以减少50%以上。进行了详细的测量,并将显示结果。可以得出结论,四冲程发动机的气门机构中的哪些轻量化组件可以有助于降低创新型气门机构的扭矩。

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