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层合板中压电作动器最优厚度和嵌入位置研究 被引量:1

THE OPTIMAL THICKNESS AND EMBEDDING POSITION OF PIEZOELECTRIC ACTUATOR IN COMPOSITE LAMINATES
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摘要 研究了压电结构中压电片厚度和嵌入深度的优化问题。首先给出了压电层合板的高阶耦合分析模型;然后以不受约束的含压电铺层复合材料板为代表,在压电层厚度方向施加电场时板自由变形,假设板任意微元横截面上内力为零,以其弯(扭)曲曲率最大为优化目标,建立了求解压电片最优厚度和嵌入深度问题的约束优化模型。最后分别以各向同性板中嵌入各项同性压电片和复合材料板中嵌入各向异性压电片为例进行了分析,绘出了目标函数的三维曲面图及等高线图,结果表明压电片的作动效能与其厚度和嵌入位置密切相关,而最优厚度和嵌入位置是由压电片和基体的材料特性决定的。 The optimization of thickness and embedding position of a piezoelectric actuator in composite laminates is studied. First, a high order coupled model for piezoelectric laminates is presented. Then, a general laminate with a piezoelectric layer is selected as a typical representation, which has no constrains and can deform freely when an electric field is applied through the thickness of the piezoelectric layer. With that assumption that the internal forces on the cross sections of any plate element are zero, a constrained optimization problem is formulated by maximizing the bending or twisting curvature of the laminate. Finally, an isotropic plate with isotropic actuator and a composite plate with anisotropic actuator are analyzed. The three dimensional(3D) curved surface and contour graphs of the object function are given to visualize the results, which show that the effectiveness of the piezoelectric actuator is sensibly relative to its thickness and embedding position, and the optimal thicknenss and position are determinedby the material properties of the actuator and the laminate.
出处 《工程力学》 EI CSCD 北大核心 2006年第4期166-171,176,共7页 Engineering Mechanics
基金 国家863基金资助项目(2002AA001006)
关键词 智能结构 优化 压电作动器 复合材料板 嵌入式 smart structure optimization piezoelectric actuator composite laminates embedding
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参考文献12

  • 1Inderjit C.Review of state of art of smart structures and integrated systems[J].AIAA Journal,2002,40(11):2145~2187.
  • 2Sunar M,Rao S S.Recent advances in sensing and control of flexible structures via piezoelectric materials technology[J].Applied Mechanics Review,1999,52:1~16.
  • 3Crawley E F.Intelligent structures for aerospace:a technology overview and assessment[J].A IA A Journal,1987,25(10):1373~1385.
  • 4Fernandes A.Accurate modeling of piezoelectric plates:single-layered plate[J].Archive of Applied Mechanics,2001,71:509~524.
  • 5Lee Y Y,Yuen K K,Ng C F,Cheng G F.Numerical simulation model of vibration responses of rectangular plates embedded with piezoelectric actuators[J].Thin-Walled Structures,2002,40:1~28.
  • 6Sylvaine L,Hisham A K,Yvan B.Piezoelectric actuators and sensors location for active control of flexible structures[J].IEEE Transactions on Instrumentation and Measurement,2001,50(6):1577~1582.
  • 7Batra R C,Liang X Q,Yang J S.Shape control of vibrating simply supported rectangular plates[J].AIAA Journal,1996,34(1):116~122.
  • 8Dunant H.Vibration analysis and control of smart structures[D].New South Wales:University of Newcastle,2002.
  • 9Fleming A J,Moheimani S O R.Adaptive piezoelectric shunt damping.Smart Materials and Structures[J].2002,12:36~48.
  • 10Chee C,Tong L,Steven G P.Static shape control of composite plates using a curvature-displacement based algorithm[J].Solids and Structures,2001,38:6381~6403.

二级参考文献8

  • 1阎云聚,姜节胜,顾松年.智能复合材料结构的应用发展前景[J].测控技术,1996,15(4):3-4. 被引量:7
  • 2E F Crawley. Intelligent structures for aerospace: a Technology overview and assessment[J], AIAA Journal, 1994, 32(8), 1689-1699.
  • 3H S Tzou and C I Tseng. Distributed piezoelectric sensor/actuator design for dynamic measurement/control of distributed parameter system[J], Journal of Sound and Vibration, 1990, 138, 17-34.
  • 4S K Ha, C Keilers. Finite element analysis of composite structrues containing distributed piezoceramic sensors and actuators[J],AIAA Journal, 1992, 30(3), 772-780.
  • 5H Janocha. Adaptronies and Smart Structures . Basics, Materials,Design, and Applications [ M], Springer publishing house Berlin Heidelberg, September 1999, 106- 123.
  • 6E F Crawley, J de Luis. Use of piezoelectric actuators as element of intelligent structures[J], AIAA Journal, 1987, 25(10), 1373-1385.
  • 7Q Wang, C M Wang. A controllability index for optimal design of piezoelectric actuators in vibration control of beam structures[J],Journal of Sound and Vibration, 2001, 242(3), 507-518.
  • 8钱振东,沈建华,黄卫,朱德懋.采用压电陶瓷元件进行智能板振动控制[J].振动.测试与诊断,2000,20(3):196-201. 被引量:11

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