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Integral Piezoactuator System with Optimum Placement of Functionally Graded Material — A Topology Optimization Paradigm

机译:功能梯度材料的最佳放置的集成压电致动器系统—拓扑优化范例

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摘要

Piezoactuators consist of compliant mechanisms actuated by two or more piezoceramic devices. During the assembling process, such flexible structures are usually bonded to the piezoceramics. The thin bonding layer(s) between the compliant mechanism and the piezoceramic may induce undesirable behavior, including unusual interfacial non-linearities. This constitutes a drawback of piezoelectric actuators and, in some applications, such as those associated to vibration control and structural health monitoring (e.g., aircraft industry), their use may become either unfeasible or at least limited. A possible solution to this standing problem can be achieved through the functionally graded material concept and consists of developing 'integral piezoactuators', that is those with no bonding layer(s) and whose performance can be improved by tailoring their structural topology and material gradation. Thus, a topology optimization formulation is developed, which allows simultaneous distribution of void and functionally graded piezoelectric materials (including both piezo and non-piezoelectric materials) in the design domain in order to achieve certain specified actuation movements. Two concurrent design problems are considered, that is the optimum design of the piezoceramic property gradation, and the design of the functionally graded structural topology. Two-dimensional piezoactuator designs are investigated because the applications of interest consist of planar devices. Moreover, material gradation is considered in only one direction in order to account for manufacturability issues. To broaden the range of such devices in the field of smart structures, the design of integral Moonie-type functionally graded piezoactuators is provided according to specified performance requirements.
机译:压电执行器由两个或多个压电陶瓷设备驱动的顺应机构组成。在组装过程中,通常将这种柔性结构结合到压电陶瓷上。顺应性机构与压电陶瓷之间的薄粘结层可能引起不良行为,包括异常的界面非线性。这构成了压电致动器的缺点,并且在某些应用中,例如与振动控制和结构健康监测相关的那些应用(例如,飞机工业),其使用可能变得不可行或至少受到限制。可以通过功能分级的材料概念来解决此难题,包括开发“整体压电致动器”,即没有粘结层的“压电致动器”,其性能可以通过调整其结构拓扑和材料等级来提高。因此,开发了一种拓扑优化配方,该拓扑优化配方允许在设计域中同时分布空隙和功能渐变的压电材料(包括压电材料和非压电材料),以实现某些特定的驱动运动。考虑了两个同时存在的设计问题,即压电陶瓷性能梯度的最佳设计和功能梯度结构拓扑的设计。对二维压电致动器的设计进行了研究,因为感兴趣的应用包括平面器件。此外,为了解决可制造性问题,仅在一个方向上考虑了材料等级。为了扩大此类设备在智能结构领域的应用范围,根据指定的性能要求,提供了一体式Moonie型功能梯度压电致动器的设计。

著录项

  • 来源
    《Journal of intelligent material systems and structures》 |2010年第16期|p.1653-1668|共16页
  • 作者单位

    Department of Mechatronics and Mechanical Systems Engineering, Escola Politecnica da Universidade de Sao Paulo, Av. Prof. Mello Moraes, 2231, 05508-900, Sao Paulo, SP, Brazil;

    Newmark Laboratory, Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, 205 North Mathews Av., Urbana, IL, 61801, USA,Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, 158 Mechanical Engineering Building, 1206 West Green Street, Urbana, IL 61801-2906, USA;

    Department of Mechatronics and Mechanical Systems Engineering, Escola Politecnica da Universidade de Sao Paulo, Av. Prof. Mello Moraes, 2231, 05508-900, Sao Paulo, SP, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    actuator; optimization; piezoelectric; FGM; topology; optimization;

    机译:执行器优化;压电女性生殖器;拓扑优化;

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