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分布参数动力学系统的Hopf分叉
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作者 郭乾荣 《上海交通大学学报》 EI CAS CSCD 北大核心 1989年第2期45-52,共8页
本文用无限维可微动力学理论讨论了分布参数动力学系统的Hopf 分叉问题,计算了翼板颤振的分叉值,并应用分布参数系统的中心不变流形定理论证了分叉周期解的稳定性。
关键词 可微动力学 HOPF分叉 翼板颤振
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The theoretical analysis of dynamic response on cantilever beam of variable stiffness 被引量:1
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作者 Huo Bingyong Yi Weijian 《Engineering Sciences》 EI 2014年第2期93-96,共4页
The paper presents the theoretical analysis of a variable stiffness beam. The bending stiffness EI varies continuously along the length of the beam. Dynamic equation yields differential equation with variable co- effi... The paper presents the theoretical analysis of a variable stiffness beam. The bending stiffness EI varies continuously along the length of the beam. Dynamic equation yields differential equation with variable co- efficients based on the model of the Euler-Bernoulli beam. Then differential equation with variable coefficients becomes that with constant coefficients by variable substitution. At last, the study obtains the solution of dy- namic equation. The cantilever beam is an object for analysis. When the flexural rigidity at free end is a constant and that at clamped end is varied, the dynamic characteristics are analyzed under several cases. The results dem- onstrate that the natural angular frequency reduces as the fiexural rigidity reduces. When the rigidity of clamped end is higher than that of free end, low-level mode contributes the larger displacement response to the total re- sponse. On the contrary, the contribution of low-level mode is lesser than that of hi^h-level mode. 展开更多
关键词 stiffness function differential equation with variable coefficients cantilever beam
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