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Multilayer laminated piezoelectric bending actuators: design and manufacturing for optimum power density and efficiency

机译:多层层压压电弯曲执行器:设计和制造以实现最佳功率密度和效率

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In previous work we presented design and manufacturing rules for optimizing the energy density of piezoelectric bimorph actuators through the use of laser-induced melting, insulating edge coating, and features for rigid ground attachments to maximize force output, as well as a pre-stacked technique to enable mass customization. Here we adapt these techniques to bending actuators with four active layers, which utilize thinner material layers. This allows the use of lower operating voltages, which is important for overall power usage optimization, as typical small-scale power supplies are low-voltage and the efficiency of boost-converter and drive circuitry increases with decreasing output voltage. We show that this optimization results in a 24%-47% reduction in the weight of the required power supply (depending on the type of drive circuit used). We also present scaling arguments to determine when multi-layer actuator are preferable to thinner actuators, and show that our techniques are capable of scaling down to sub-mg weight actuators.
机译:在先前的工作中,我们介绍了设计和制造规则,这些规则通过使用激光感应熔化,绝缘边缘涂层以及用于最大力输出的刚性接地附件的功能以及预堆叠技术来优化压电双压电晶片执行器的能量密度。以实现大规模定制。在这里,我们将这些技术应用于具有四个活动层的弯曲执行器,这些活动层利用了较薄的材料层。这允许使用较低的工作电压,这对于优化整体电源使用非常重要,因为典型的小型电源为低压,并且升压转换器和驱动电路的效率随输出电压的降低而提高。我们表明,这种优化可以使所需电源的重量减少24%-47%(取决于所用驱动电路的类型)。我们还提出了缩放比例参数,以确定何时多层致动器比更薄的致动器更可取,并表明我们的技术能够按比例缩小到亚毫克重量的致动器。

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