摘要
基于有限变形动力学理论,研究了电活性聚合物圆柱壳在内表面突加内压及电场作用下的运动与破坏问题.首先得到了描述电活性聚合物圆柱壳内表面运动的非线性常微分方程,然后对方程进行了数值计算并进行动力学定性分析.当突加内压小于某个确定的临界值时,圆柱壳产生非线性周期振动,而当突加内压大于这个临界值时,圆柱壳将被破坏.通过对振动的振幅、相图和周期的计算,讨论了外加电场、内压及圆柱壳的厚度等参数对圆柱壳振动情况的影响.
Based on the theory of finite elasto-dynamics, motion and destruction of an electro-active polymer cylindrical shell subject to suddenly applied internal pressure and an electric field are studied. A nonlinear differential equation describing the motion of the shell's inner surface is developed. Numerical computation and qualitative dynamic analysis are conducted. It is shown that nonlinear periodic oscillation exists when the internal pressure is less than a critical value. When the pressure exceeds the value, the shell is destroyed. The effects of electric field, internal pressure and thickness of the shell on oscillation are discussed by examining vibration amplitudes, phase diagrams and periods.
出处
《上海大学学报(自然科学版)》
CAS
CSCD
北大核心
2016年第4期486-496,共11页
Journal of Shanghai University:Natural Science Edition
基金
上海市重点学科建设资助项目(S30106)
关键词
电活性聚合物
突加内压
非线性周期振动
临界载荷
破坏
electro-active polymer
suddenly applied internal pressure
nonlinear periodic oscillation
critical pressure
destroy