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Adaptive Lagrange finite element methods for high precision vibrations and piezoelectric acoustic wave computations in SMT structures and plates with nano interfaces
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作者 张武 洪涛 《Journal of Zhejiang University Science》 CSCD 2002年第1期6-12,共7页
This paper discusses the validity of (adaptive) Lagrange generalized plain finite element method (FEM) and plate element method for accurate analysis of acoustic waves in multi-layered piezoelectric structures with ti... This paper discusses the validity of (adaptive) Lagrange generalized plain finite element method (FEM) and plate element method for accurate analysis of acoustic waves in multi-layered piezoelectric structures with tiny interfaces between metal electrodes and surface mounted piezoelectric substrates. We have come to conclusion that the quantitative relationships between the acoustic and electric fields in a piezoelectric structure can be accurately determined through the proposed finite element methods. The higher-order Lagrange FEM proposed for dynamic piezoelectric computation is proved to be very accurate (prescribed relative error 0.02% - 0.04% ) and a great improvement in convergence accuracy over the higher order Mindlin plate element method for piezoelectric structural analysis due to the assumptions and corrections in the plate theories.The converged lagrange finite element methods are compared with the plate element methods and the computedresults are in good agreement with available exact and experimental data. The adaptive Lagrange finite elementmethods and a new FEA computer program developed for macro- and micro-scale analyses are reviewed, and recently extended with great potential to high-precision nano-scale analysis in this paper and the similarities between piezoelectric and seismic wave propagations in layered structures and plates are stressed. 展开更多
关键词 Lagrangian finite element surface mount resonator structure plate element anisotropic piezoelectric quartz material acoustic wave computational nano\|dynamics SMT(surface mount technology)
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仿生关节的设计
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作者 郭雪莲 李琳 《振动工程学报》 EI CSCD 北大核心 2004年第z2期921-924,共4页
提出了一种用于高精度振动控制平台的连接结构--仿生关节.它是以球铰为基础,模仿动物的关节而设计的,因此称为仿生关节.仿生关节与一般球铰的区别在于球腔内充有润滑液.给出了仿生关节的结构形式及其力学特性分析方法.以流体的连续方程... 提出了一种用于高精度振动控制平台的连接结构--仿生关节.它是以球铰为基础,模仿动物的关节而设计的,因此称为仿生关节.仿生关节与一般球铰的区别在于球腔内充有润滑液.给出了仿生关节的结构形式及其力学特性分析方法.以流体的连续方程和N-S方程为基础研究了球腔内的压力分布,进而导出了关节的等效刚度与等效阻尼.研究了仿生关节的刚度、阻尼与结构设计参数的关系,给出了刚度、阻尼随球腔内间隙的变换规律. 展开更多
关键词 高精度振动控制平台 仿生关节 动力特性
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