• CN:11-2187/TH
  • ISSN:0577-6686

›› 2009, Vol. 45 ›› Issue (11): 99-105.

• 论文 • 上一篇    下一篇

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引入摩擦的周向短弹簧汽车双质量飞轮分析模型及扭振固有特性

宋立权; 赵孝峰;何泽海;罗书明;田宏艳;樊照钟   

  1. 重庆大学机械传动国家重点实验室;重庆光大产业有限公司
  • 发布日期:2009-11-15

Analysis Model and Inherent Characteristics of Torsional Vibration of the Dual Mass Flywheel-circumferential Short Spring Introduced Friction

SONG Liquan;ZHAO Xiaofeng;HE Zehai;LUO Shuming;TIAN Hongyan;FAN Zhaozhong   

  1. The State Key Laboratory of Mechanical Transmission, Chongqing University Chongqing Guangda Industry Co. Ltd.
  • Published:2009-11-15

摘要: 首次将摩擦引入周向短弹簧汽车双质量飞轮的转矩和转角关系的分析计算,获得了与测试结果基本一致的转矩特性曲线的力学模型。由所建立的发动机—双质量飞轮式扭振减振器—传动系的动力学模型,分析各参数对系统固有频率的影响。将利用摩擦实现增大转矩和过载保护的理念引入双质量飞轮的设计,为高性能双质量飞轮的产品的开发提供设计思路,揭示引入摩擦的双质量飞轮减振器优良减振的内在本质。得到考虑摩擦特性的分析模型更具真实性和更有利于提高产品的减振性能的结论,以及使共振转速完全被隔离在发动机的工作转速之外,可通过调整双质量飞轮的扭转刚度k1和初级飞轮转动惯量J1及次级飞轮转动惯量J2而实现,增加J1而减小J2对避免共振的产生是有利的。

关键词: 机械系统动力学, 机械振动学, 扭振减振器, 双质量飞轮

Abstract: Friction is for the first time introduced into the analysis and calculation of the relation between torque and torsional angel of the dual-mass flywheel-circumferential short spring, and the mechanical model of torque characteristic curve basically agreeing with the test result is obtained. Based on the established dynamic model of the engine-dual mass flywheel torsional damper-transmission system, the influences of various parameters on the system inherent frequency is analyzed. The concept of using friction to increase torque and overload protection is introduced into the design of dual mass flywheel, thereby providing design ideas for the development of high-performance dual-mass flywheel products and revealing the good intrinsic nature of the vibration damper of dual-mass flywheel with friction introduced. It is concluded that the analysis model is more authentic and helpful to improving the damping performance of product by taking into account the characteristic of friction, also the resonance speed can be completely isolated beyond the working speed of engine by adjusting the stiffness k1 of the dual-mass flywheel, the moment of inertia J1 of the primary flywheel and the moment of inertia J2 of the secondary flywheel inertia. Increasing the parameter J1 while reducing the parameter J2 is helpful for avoiding the resonance.

Key words: Dual mass flywheel, Mechanical system dynamics, Mechanical vibration, Torsional damper

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