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    • 10. 发明授权
    • Piezoelectric multilayer-stacked hybrid actuation/transduction system
    • 压电多层叠混合致动/转导系统
    • US08680749B2
    • 2014-03-25
    • US12584290
    • 2009-09-03
    • Tian-Bing XuXiaoning JiangJi Su
    • Tian-Bing XuXiaoning JiangJi Su
    • H01L41/113
    • H01L41/0986H01L41/083
    • A novel full piezoelectric multilayer stacked hybrid actuation/transduction system. The system demonstrates significantly-enhanced electromechanical performance by utilizing the cooperative contributions of the electromechanical responses of multilayer stacked negative and positive strain components. Both experimental and theoretical studies indicate that for this system, the displacement is over three times that of a same-sized conventional flextensional actuator/transducer. The system consists of at least 2 layers which include electromechanically active components. The layers are arranged such that when electric power is applied, one layer contracts in a transverse direction while the second layer expands in a transverse direction which is perpendicular to the transverse direction of the first layer. An alternate embodiment includes a third layer. In this embodiment, the outer two layers contract in parallel transverse directions while the middle layer expands in a transverse direction which is perpendicular to the transverse direction of the outer layers.
    • 一种新颖的全压电多层堆叠混合致动/转导系统。 该系统通过利用多层堆叠负和正应变分量的机电响应的协同贡献,显示出显着增强的机电性能。 实验和理论研究均表明,对于该系统,位移是相同尺寸的常规弯曲致动器/换能器的位移的三倍以上。 该系统包括至少2层,包括机电活动部件。 这些层被布置成使得当施加电力时,一个层在横向方向上收缩,而第二层在垂直于第一层的横向方向的横向上膨胀。 替代实施例包括第三层。 在本实施例中,外两层在平行的横向方向上收缩,而中间层在垂直于外层的横向方向的横向上膨胀。