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Coupled electromechanical analysis of piezoelectric ceramic actuator-driven systems: determination of the actuator power consumption and system energy transfer

机译:压电陶瓷执行器驱动系统的耦合机电分析:执行器功耗和系统能量传递的测定

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This paper presents a coupled electro-mechanical analysis of piezoelectric ceramic (PZT) actuators integrated in mechanical systems to determine the actuator power consumption and energy transfer in the electro-mechanical systems. For a material system with integrated PZT actuators, the power consumed by the PZT actuators consists of two parts: the energy used to drive the system which is dissipated in terms of heat as a result of the structural damping, and energy dissipated by the PZT actuators themselves because of their dielectric loss and internal damping. The coupled analysis presented herein uses a simple model, a PZT actuator-driven one-degree-freedom spring-mass-damper system, to illustrate the methodology used to determine the actuator power consumption energy flow in the coupled electro-mechanical systems. This method can be applied to more complicated mechanical structures or systems, such as a fluid-loaded shell for active structural acoustic control. The determination of the actuator power consumption can be very important in the design and application of intelligent material systems and structures and of particular relevance to designs that must be optimized to reduce mass and energy.
机译:本文介绍了集成在机械系统中的压电陶瓷(PZT)执行器的耦合电力机电分析,以确定机电系统中的致动器功耗和能量传递。对于具有集成PZT执行器的材料系统,PZT执行器消耗的功率由两部分组成:用于驱动系统的能量,该系统由于结构阻尼而在热量耗散,并且由PZT执行器散发的能量消散他们自己是因为它们的介电损耗和内部阻尼。这里呈现的耦合分析使用简单的模型,一种PZT致动器驱动的一度自由度的弹簧质量阻尼系统,以说明用于确定耦合电力机械系统中的致动器功耗能量流的方法。该方法可以应用于更复杂的机械结构或系统,例如用于有源结构声控制的流体负载壳。致动器功耗的确定在智能材料系统和结构的设计和应用中非常重要,以及与必须优化以降低质量和能量的设计的特定相关性。

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