Yao K, Zhu W, Uchino E, Zhang Z, Lim L C
Sch. of Electr. and Electron. Eng., Nanyang Technol. Univ.
IEEE Trans Ultrason Ferroelectr Freq Control. 1999;46(4):1020-7. doi: 10.1109/58.775669.
A new bending mode multimorph actuator was designed and fabricated successfully by a multiple screen printing process. Unlike the conventional bimorph actuator in which the bend occurs in the thickness direction, the bend in the multimorph actuator occurs in the widthwise direction because of synchronistical deformation of each single monolithic layer in the multilayer structure. The theoretical analysis and experimental measurements were conducted to study the performance of this type of actuator, and a comparison was made with the conventional bimorph actuator. Larger displacement, higher resonance frequency, and much larger blocking force could be achieved with the multimorph actuator than with a bimorph actuator of similar dimensions. The multimorph actuator presented in this paper provides a valuable alternative for actuator applications beyond those available with the popular bimorph and longitudinal multilayer actuators.
通过多重丝网印刷工艺成功设计并制造出一种新型弯曲模式多晶型致动器。与传统双晶型致动器在厚度方向发生弯曲不同,多晶型致动器的弯曲发生在宽度方向,这是由于多层结构中每个单一整体层的同步变形所致。进行了理论分析和实验测量以研究此类致动器的性能,并与传统双晶型致动器进行了比较。与尺寸相似的双晶型致动器相比,多晶型致动器能够实现更大的位移、更高的共振频率以及大得多的堵转力。本文介绍的多晶型致动器为致动器应用提供了一种有价值的替代方案,这是目前流行的双晶型和纵向多层致动器所无法提供的。