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结构动力学拓扑优化局部模态现象分析
引用本文:朱继宏,张卫红,邱克鹏.结构动力学拓扑优化局部模态现象分析[J].航空学报,2006,27(4):619-623.
作者姓名:朱继宏  张卫红  邱克鹏
作者单位:西北工业大学 中法并行工程联合实验室, 陕西 西安 710072
基金项目:国家高技术研究发展计划(863计划) , 航空基金 , 西北工业大学校科研和教改项目
摘    要:使用拓扑优化技术进行结构自然频率最大化设计时的主要问题是结构空洞区域可能出现的局部模态现象。采用刚度矩阵和质量矩阵求解动力学特征方程,通过算例分析了结构密度差异、惩罚因子对自然频率和模态的影响以及局部模态现象产生的原因。结果表明,由于实体各向同性材料惩罚函数法(SIMP)使用了指数惩罚因子,空洞区域的密度与刚度差异远远大于实体区域,导致空洞区域局部模态的产生。分析了局部模态的产生过程,给出了结构自然频率和模态相对实体-孔洞区域密度的比值以及惩罚因子的变化趋势。同时,基于传统体胞微结构均匀化等效模型方法,提出了描述结构空洞区域的多种体胞微结构,计算证实这些微结构形式均可有效地避免局部模态的发生。

关 键 词:动力学拓扑优化  微结构  局部模态  均匀化方法  
文章编号:1000-6893(2005)04-0619-05
收稿时间:2004-12-16
修稿时间:2004年12月16

Investigation of Localized Modes in Topology Optimization of Dynamic Structures
ZHU Ji-hong,ZHANG Wei-hong,QIU Ke-peng.Investigation of Localized Modes in Topology Optimization of Dynamic Structures[J].Acta Aeronautica et Astronautica Sinica,2006,27(4):619-623.
Authors:ZHU Ji-hong  ZHANG Wei-hong  QIU Ke-peng
Institution:Sino-French Laboratory of Concurrent Engineering, Northwestern Polytechnical University, Xi'an 710072, China
Abstract:One of the main problems in the frequency maximization of dynamic structures by topology optimization is the appearance of localized modes in low-density areas.This paper aims at investigating the inherent cause by means of numerical examples.Based on the stiffness and mass matrices of the structure,the dynamic characteristic equation is solved to figure out how the density difference and penalty factor affect the natural frequencies and modal vectors.It is found that due to the penalty factor of the SIMP method,the ratio of the density to stiffness is greater in the solid region than in the void region.Such a difference consequently results in the appearance of localized modes in the void region.Furthermore,natural frequencies and modal vectors are studied to show their variations versus the density ratio between the solid and the void.In the meantime,the microstructure based on homogenization method is discussed.Based on the existing unit cell,a variety of new unit cells is proposed and numerically validated to avoid localized modes.
Keywords:dynamic topology optimization  microstructure  localized mode  homogenization method  
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