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High displacement piezoelectric actuators: characterization at high load with controlled end conditions

机译:高位移压电执行器:高负载具有控制的最终条件的表征

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Piezoelectric ceramic transducers are characterized by relatively small strains on the order of 0.1%. Methods of achieving larger displacements include mechanical amplifiers and flexural mode actuators, such as unimorphs or bimorphs. A particular type of stressed unimorph flexural actuator, the "THUNDER" actuator, provides enhanced flexural strain. (THUNDER/sup TM/ is a trademark of FACE International Corporation). However, displacement has generally not been characterized as a function of load, which was needed for our application. We found that load and displacement were very sensitive to end conditions, which has also not been reported in the literature. The commercially available THUNDER/sup TM/ model 8-R rectangular actuators were chosen for the research presented here. They were operated in a flexural mode, and used to characterize displacement as a function of load under well-controlled end conditions. Our experimental results show that progressively restrictive end conditions increased the stiffness, ranging from 2.5N/m to 23N/m, which increased the load capabilities of the actuator. In some cases, displacement actually increased as a function of load as well. This enhanced stiffness was obtained at a cost of reduced no-load flexural strain (defined as the ratio of flexural displacement and ceramic length), ranging from 1.08% for free end conditions to 0.2% for highly restricted end conditions. The load bearing capabilities were tested out to 10N for most end conditions.
机译:压电陶瓷换能器的特征在于相对小的菌株,大约0.1%。实现较大位移的方法包括机械放大器和弯曲模式致动器,例如单身形式或双芯片。一种特定类型的压力的单身弯曲致动器,“雷声”致动器,提供增强的弯曲应变。 (雷声/ SUP TM /是Face International Corporation的商标)。然而,位移通常没有表征为负载的函数,这是我们应用所需的。我们发现负载和位移对最终条件非常敏感,在文献中也没有报道。选择商业上可获得的雷/ SUP TM /型号8-R矩形执行器用于此处提出的研究。它们以弯曲模式运行,并用于在良好控制的最终条件下表征位移作为负载的函数。我们的实验结果表明,逐渐限制的最终条件增加了刚度,范围为2.5n / m至23n / m,这增加了致动器的负荷能力。在某些情况下,位移实际上也随着负载的函数而增加。这种增强的刚度是以减少的无负荷弯曲菌株(定义为弯曲位移和陶瓷长度)的成本获得的,从1.08%的自由端条件的范围为0.2%,对于高度限制的最终条件。负载轴承能力在10N上测试到最终条件。

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