Wang Hairen, Yang Shengfeng
Appl Opt. 2016 Feb 1;55(4):873-8. doi: 10.1364/AO.55.000873.
A theoretical analysis of the thermal effects of a circular bimorph piezoelectric actuator (CBPA) was performed. The circular bimorph structure consists of two flexible piezoelectric ceramic layers and one metallic layer in the middle, and is powered to produce flexural deformation. The CBPA, which may be a good match for large adaptive optics telescopes, has a large stroke and a high resonance frequency. We have derived analytical solutions (both the static solution and the dynamic solution) of the thermal effects of introducing (and increasing the thickness of) a metallic layer into the bimorph. Numerical results are presented to illustrate the dependence of the CBPA's performance upon the physical parameters.
对圆形双压电晶片压电致动器(CBPA)的热效应进行了理论分析。圆形双压电晶片结构由两个柔性压电陶瓷层和中间的一个金属层组成,并通过供电产生弯曲变形。CBPA可能非常适合大型自适应光学望远镜,它具有大行程和高共振频率。我们推导了在双压电晶片中引入(并增加厚度)金属层的热效应的解析解(包括静态解和动态解)。给出了数值结果以说明CBPA的性能对物理参数的依赖性。