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Measurement on the actuating and sensing capability of a PZT microcantilever

机译:PZT微悬臂梁的致动和传感能力的测量

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摘要

PZT thin film devices are very competitive when charge signal and force outputs are demanded. A Pb(Zr_(0.5)Ti_(0.5))O_(3) thin film with 24 coating layers is deposited by a sol-gel method. An array of three piezoelectric microcantilevers is fabricated using the wet and dry combined bulk micromachining techniques. Each microcantilever has a two-segment top electrode in different dimensions. The actuating and sensing capability of the six segments on the three microcantilevers are measured. It is proved that the proposed piezoelectric microcantilevers have both actuating and sensing functions; different proportion partition results in the diversity of the actuating and sensing capability. At the same location, the longer the piezoelectric segment is, the stronger actuating and sensing capability it has. The maximum actuating sensitivity and sensing sensitivity before poling treatment are 16.7 (mu)N V~(-1) and 13.44 pC (mu)m~(-1), respectively, which become about twice as big after poling. We may choose the appropriate microcantilevers to satisfy our purpose on some specific condition where force feedback and object manipulation are needed simultaneously. A hysteresis phenomenon is encountered in the actuating process while not in the sensing process.
机译:当需要电荷信号和力输出时,PZT薄膜器件极具竞争力。通过溶胶-凝胶法沉积具有24个涂层的Pb(Zr_(0.5)Ti_(0.5))O_(3)薄膜。使用湿式和干式组合体微加工技术制造了三个压电微悬臂梁阵列。每个微悬臂梁都有一个尺寸不同的两段式顶部电极。测量了三个微悬臂梁上六个段的启动和感应能力。实践证明,所提出的压电微悬臂梁既具有驱动功能又具有传感功能。不同的比例分配导致致动和传感能力的多样性。在同一位置,压电段越长,其驱动和感应能力越强。极化处理前的最大驱动灵敏度和感测灵敏度分别为16.7μNV〜(-1)和13.44 pCμm〜(-1),约为极化后的两倍。在某些需要同时进行力反馈和物体操纵的特定条件下,我们可以选择合适的微悬臂梁以满足我们的目的。在执行过程中会遇到磁滞现象,而在检测过程中不会遇到磁滞现象。

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