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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Experimental investigation on the piezo-composite actuator with piezoelectric single-crystal layer
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Experimental investigation on the piezo-composite actuator with piezoelectric single-crystal layer

机译:压电单晶层压电复合致动器的实验研究

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摘要

Studies on muscle mimicking actuators have increased in the last two decades due to the possibility of various applications for compact lightweight actuators including small unmanned aircrafts, missile, and biomimetic robots. Piezoelectric materials have been used in a variety of applications ranging from shape control of structure and active vibration control of structure to noise suppression due to compact size and good frequency response. Conventional polycrystal piezoelectric ceramic materials, however, have limited actuating strains and displacement, hindering their use in actuators for small aerospace vehicles. In this study, the design and fabrication method of an actuator with a piezoelectric single-crystal layer were investigated to increase the actuation strain and displacement. From a comparison of the performance of the LIPCA-C2 and LIPCA-S prototypes, it was found that the new LIPCA-S2, which has much higher coefficient of the unimorph actuator, can generate an actuating displacement more than twice that of LIPCA-C2.
机译:在过去的二十年中,由于微型轻型致动器的各种应用(包括小型无人飞机,导弹和仿生机器人)的应用可能性,对模拟肌肉致动器的研究有所增加。压电材料已被用于各种应用中,从结构的形状控制和结构的主动振动控制到由于紧凑的尺寸和良好的频率响应而产生的噪声抑制。然而,常规的多晶压电陶瓷材料具有有限的致动应变和位移,从而阻碍了它们在小型航空航天飞机的致动器中的使用。在这项研究中,研究了具有压电单晶层的致动器的设计和制造方法,以增加致动应变和位移。通过比较LIPCA-C2和LIPCA-S原型的性能,发现新型LIPCA-S2具有更高的单压电晶片致动器系数,其产生的致动位移是LIPCA-C2的两倍以上。

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