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金属橡胶非线性隔振器试验研究与参数分析
引用本文:李玉龙,白鸿柏,何忠波,路纯红.金属橡胶非线性隔振器试验研究与参数分析[J].噪声与振动控制,2015,35(2):194-200.
作者姓名:李玉龙  白鸿柏  何忠波  路纯红
作者单位:( 1. 军械工程学院 车辆与电气工程系车辆工程教研室, 石家庄 050003;2. 军械工程学院 车辆与电气工程系, 石家庄 050003 )
基金项目:武器装备“十二五”计划(51312060404)
摘    要:研究了变激励条件下金属橡胶非线性隔振器的参数变化。以某型隔振器为研究对象,对其进行了静态试验及不同正弦激励条件下动态试验。借助双折线泛函本构关系的本构模型,利用粒子群优化算法对不同激励条件下的隔振器模型参数进行了识别,通过识别参数的对比得到了隔振器各参数在不同激励情况下的变化趋势。结果显示对金属橡胶非线性隔振系统进行动力学分析时,必须首先对实际工况下隔振器进行动态试验。再通过参数识别获取隔振器准确的数学模型,才能对金属橡胶隔振系统进行准确的动力学分析。为金属橡胶隔振系统的动力学分析提供了一般方法。

关 键 词:振动与波  金属橡胶隔振器  动力学模型  粒子群优化算法  参数识别  
收稿时间:2014-07-30

Experimental Study and Parameter Analysis of Nonlinear Metal-rubber Isolators
LI Yu-long;BAI Hong-bai;HE Zhong-bo;LU Chun-hong.Experimental Study and Parameter Analysis of Nonlinear Metal-rubber Isolators[J].Noise and Vibration Control,2015,35(2):194-200.
Authors:LI Yu-long;BAI Hong-bai;HE Zhong-bo;LU Chun-hong
Affiliation:LI Yu-long;BAI Hong-bai;HE Zhong-bo;LU Chun-hong;Institute of Vehicle Engineering, Ordnance Engineering College;Department of Vehicle and Electrical Engineering, Ordnance Engineering College;
Abstract:The parameters change rule of nonlinear Metal Rubber isolator under the conditions of different incentives was studied in this paper. To a certain type of Metal Rubber isolator as the research object. Firstly, the static experiment and the dynamic experiment under the conditions of different sine excitations were done. Secondly, the functional constitutive relation model based on double broken line was established. Thirdly, the parameters of the Metal Rubber isolator worked in the conditions of different incentives were identified by Particle Swarm Optimization. The parameters change rule of the nonlinear Metal Rubber isolator under the conditions of different incentives was got by comparison with the experimental results and the identification results. The result showed that dynamic experiment should be done and the right parameters should be identified under the right incentives before the analysis of a nonlinear Metal Rubber vibration isolation system. The results of the study in this paper provide a general method for the dynamics analysis of the Metal Rubber vibration isolation system.
Keywords:
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