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基于动特性分析的精密仪表转子-框架结构优化设计
引用本文:姚英学,孙丽崴.基于动特性分析的精密仪表转子-框架结构优化设计[J].中国机械工程,2003,14(3):203-205.
作者姓名:姚英学  孙丽崴
作者单位:哈尔滨工业大学机械工程系,哈尔滨市,150001
基金项目:总装备部“九五”工艺预研项目
摘    要:为提高精密仪表的动态稳定性,提出一种基于结构特性分析的综合优化设计方法。该法将有限元计算和模态试验相结合,利用有限元法分析最初的设计结构动态特性,然后对该结构进行试验模态分析,从而检验有限元分析方法的可信度,利用经过验证的简化模型和计算分析,分析结构参数改变时对系统动特性的影响,进而实现结构的优化设计,从转子-框架结构的优化过程可以看出,该方法在保证可靠性的同时大大降低了成本,并且提高了效率,可广泛应用于工程设计中。

关 键 词:转子-框架结构  精密仪表  动特性  有限元法  模态试验  优化设计
文章编号:1004-132X(2003)03-0203-03

Design Optimization of Rotor-frame Structure of Precise Instruments Based on Modal Analysis
Yao Yingxue.Design Optimization of Rotor-frame Structure of Precise Instruments Based on Modal Analysis[J].China Mechanical Engineering,2003,14(3):203-205.
Authors:Yao Yingxue
Abstract:In order to improve the dynamic stability of precise instruments, a compositive design method is proposed in this paper based on modal analysis of the structure. It combines Finite Element Analysis(FEA) with modal test. First we analyze modal characteristics of the structure with FEA, then test the natural frequency of the structure by experiments to check the reliability of FEA method. Finally we optimize the design by modifying certain parameters of the structure and analyzing the corresponding dynamic characteristics. Proved reasonable by the optimization instance of rotor-frame structure, this method can be widely applied in engineering design for its high reliability, efficiency and low cost.
Keywords:precise instrument  ynamic characteristics  finite element analysis    modal test    design optimization  
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