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Mechanical Properties of Piezoelectric Stack Actuators under Electro-Mechanical Loading

机译:机电载荷作用下压电叠层作动器的力学性能

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摘要

The responses of the piezoelectric stack actuator under electro-mechanical loading are investigated. Two types of tests are performed: influences of the preload on characteristics of the stack and dynamic test. Experimental results indicate strong dependence of the stack properties on the electro-mechanical loading conditions. The displacement output is initially enhanced with an increase of the mechanical preload, and the maximum value is obtained at the preload of about 0.4 kN. But much higher preload will cause the decrease of the displacement output. The effective piezoelectric coefficient and the hysteresis degree are employed to describe the variations of the stack's performances caused by the mechanical preload. The effective piezoelectric coefficient under different preloads can be calculated by using experimental results of the displacement output and input voltage. Within low frequency band of about 400 Hz, the displacement magnitude of the stack is nearly constant, and the phase lag increases with the increase of the driving frequency at the applied sine sweep voltage with the amplitude of 150V.
机译:研究了压电堆叠致动器在机电载荷下的响应。进行两种类型的测试:预紧力对电池组特性的影响和动态测试。实验结果表明,电池组性能对机电负载条件的强烈依赖性。位移输出最初随着机械预紧力的增加而增强,并且在大约0.4 kN的预紧力下获得最大值。但是更高的预载会导致位移输出的降低。有效的压电系数和磁滞程度被用来描述由机械预紧力引起的电池堆性能的变化。利用位移输出和输入电压的实验结果,可以计算出不同预载下的有效压电系数。在约400 Hz的低频带内,堆叠的位移幅度几乎恒定,并且在施加150V振幅的正弦扫描电压时,相位滞后随驱动频率的增加而增加。

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