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Coupling problem between the dynamical and tribological behaviors in the piston-liner systems of multi-cylinder IC engines
作者姓名:王义亮  谢友柏
作者单位:School of Mechanical Engineering Taiyuan University of Technology Taiyuan 030024 China,School of Mechanical Engineering Xi’an Jiaotong University Xi’an 710049 China,School of Mechanical Engineering Xi’an Jiaotong University,Xi’an 710049 China
基金项目:the Major Program , the General Program , 国家自然科学基金
摘    要:As a central subsystem, the piston-liner systemtakes the most important role in internal combustion en-gines, and as it is well known, both the dynamic be-havior and tribologcal behavior determinate the operat-ing properties of the whole engine to a great…

关 键 词:多缸内燃机  动态摩擦行为  活塞-缸套系统  耦合问题
文章编号:1005-9113(2007)02-0276-05
收稿时间:2004-06-24

Coupling problem between the dynamical and tribological behaviors in the piston-liner systems of multi-cylinder IC engines
WANG Yi-liang,XIE You-bai.Coupling problem between the dynamical and tribological behaviors in the piston-liner systems of multi-cylinder IC engines[J].Journal of Harbin Institute of Technology,2007,14(2):276-280.
Authors:WANG Yi-liang  XIE You-bai
Abstract: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.
Keywords:multi-cylinder engine  piston-liner system  dynamic  tribology  coupling
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