首页> 外文期刊>Journal of Harbin Institute of Technology >Coupling problem between the dynamical and tribological behaviors in the piston-liner systems of multi-cylinder IC engines
【24h】

Coupling problem between the dynamical and tribological behaviors in the piston-liner systems of multi-cylinder IC engines

机译:多缸内燃机发动机缸套系统动力学与摩擦学特性的耦合问题

获取原文
获取原文并翻译 | 示例
           

摘要

This paper deals with the coupling problem between the dynamic behaviors and the tribological behaviors of the piston-liner systems in multi-cylinder internal combustion engines. Firstly, based on the correction of some errors in the equation of piston secondary motion, which have been employed by many authors for several years, a detailed mathematical model for the coupling problem between the dynamical and tribological behaviors in the piston-liner systems of multi-cylinder internal combustion engines is presented. Secondly, the lubrication and friction between the liner and piston in each cylinder is included applying the average flow model of the Reynolds equation. Thirdly, the vibration of each liner is computed through the finite element model of a four-cylinder engine block, by which not only the liner motions caused by the block vibration but also the local vibration and the local static deformation of each liner can be figured out and taken into account. Through theoretical analysis and computation, some conclusions can be drawn as: 1) Both the liner vibration and piston motion are different for different cylinder in a multi-cylinder internal combustion engine, and hence different piston-liner systems will have different tribological behaviors. 2) Different liners have coincident dynamic response on the whole, especially for the lower frequency components. However, differences still exist among the vibrations of different liners, and these differences are mainly owing to the higher frequency components. 3 ) The impacts of liner vibrations on the tribological behaviors in piston-liner systems are primarily ascribed to its higher frequency components.
机译:本文研究了多缸内燃机活塞-缸套系统的动力学行为与摩擦学行为之间的耦合问题。首先,基于对许多作者多年使用的活塞二次运动方程中的一些误差的校正,建立了用于多缸活塞-缸套系统动力学和摩擦学行为耦合问题的详细数学模型。提出了气缸内燃发动机。其次,应用雷诺方程的平均流量模型,包括每个气缸内衬套和活塞之间的润滑和摩擦。第三,通过四缸发动机缸体的有限元模型计算每个缸套的振动,不仅可以计算出缸体振动引起的缸套运动,而且可以计算每个缸套的局部振动和局部静态变形。并考虑在内。通过理论分析和计算,可以得出以下结论:1)在多缸内燃机中,不同气缸的缸套振动和活塞运动都不同,因此不同的活塞-缸套系统将具有不同的摩擦学行为。 2)不同的衬套总体上具有一致的动态响应,尤其是对于低频分量。但是,不同衬套的振动之间仍然存在差异,这些差异主要是由于频率分量较高。 3)衬套振动对活塞-衬套系统摩擦性能的影响主要归因于其较高的频率分量。

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