将电流变材料处理为粘弹性材料,采用了线性粘弹性理论,基于夹层梁动力学分析方法,利用广义Hamilton原理,推导了电流变层合梁的动力学方程.在此基础上,研究了具有简单的边界条件夹层梁的动力学特性,得出了在外加电场作用下,电流变层合梁模态频率和模态损耗因子都随着电场的增大而增大;电流变层合梁的低阶模态损耗因子变化趋势大于高阶模态损耗因子的变化趋势;在同样的电场(或电压)作用下,层合梁的低阶模态损耗因子大于高阶模态损耗因子.这些结论表明了电流变层合梁在外加电场作用下,对低频振动具有较好的振动抑振效果.
参考文献
[1] | Sprecher A F, Choi Y, Conrad H. Mechanical behavior of ER fluid-filled composites in forced oscillation. First Joint US/Japan Conf. on Adaptive Structure, Maui Hawaii, U.S.A Technonic Company, Inc.1991:560-574. |
[2] | Choi S B, Park Y K, Cheong C C. Active control of intelligent composite laminate structures incorporating an electro-rheological fluid [J]. Intelligent Material Systems and Structures, 1996,7(7):411-419. |
[3] | Choi S B, Park Y K, Cheong C C. Active control of hybrid smart structures featuring piezoelectric films and electro-rheological fluids [J].SIPE,1996,2717:544-552. |
[4] | Rahn C D, Joshi S. Modeling and control of an electrorheological sandwich beam [J]. Vibration and Acoustics, 1998,120(2):221-227. |
[5] | Yalcintas M, Coulter J P. Analytical modeling of electrorheological material based adaptive beams [J]. Intelligent Material Systems and Structures, 1995,6(7):488-497. |
[6] | Yalcintas M, Coulter J P. An adaptive beam model with electrorheological material based applications [J]. Intelligent Material Systems and Structures, 1995,6(7):497-507. |
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