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The experimental analysis on the driving characteristics of photo response torsion actuator

机译:照片响应扭转执行器驱动特性的实验分析

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The lanthanum-doped lead zirconate titanate ceramic is a well-known photostrictive material and has been studied extensively as wireless photo-controlled microactuators for its characteristic of photostrictive effect. However, the hysteresis phenomenon between photovoltage and photo-induced deformation has seriously hindered the application of the high-frequency dynamic field. The primary purpose of this article is to propose a photo response torsion actuator driven by opto-electrostatic hybrid driving method based on lanthanum-doped lead zirconate titanate ceramic to achieve the goal of rapid response regardless of the hysteresis phenomenon. To this end, this study observed the driving voltage, the relationship between the photovoltaic voltage of lanthanum-doped lead zirconate titanate ceramic and the deflection of the actuator, and the influence of different loads on driving characteristics through a series of experiments. From these experiments, the results indicate that when lanthanum-doped lead zirconate titanate ceramic is irradiated by ultraviolet light, the photovoltaic voltage with load is lower than that without load. The trend of deformation curves is in agreement with the trend of the driving voltage curves under different loads conditions. And the deformation of torsion actuator increases with the increase in light intensity. Therefore, the photo response torsion actuator driven by the opto-electrostatic hybrid driving method can control the deformation with rapid response speed effectively; meanwhile, the hysteresis phenomenon can be ignored.
机译:钛酸铅锆钛酸钛酸盐陶瓷是众所周知的可绒材料,并且已被广泛研究作为无线照片控制的微致催光器,以其具有照片效果的特征。然而,光伏和光致变形之间的滞后现象严重阻碍了高频动态场的应用。本文的主要目的是提出由基于镧掺杂锆钛酸钛酸盐陶瓷的光静电混合驱动方法驱动的光响应扭转致动器,以实现快速反应的目标,而不管滞后现象如何。为此,本研究观察了驱动电压,镧掺杂引线锆钛酸锆钛酸锆锆钛酸锆酯的光伏电压与致动器的偏转的关系,以及通过一系列实验对不同负载对驱动特性的影响。从这些实验中,结果表明,当紫外光照射镧掺杂铅锆钛酸钛酸盐陶瓷时,具有负荷的光伏电压低于没有载荷的光伏电压。变形曲线的趋势与不同负载条件下的驱动电压曲线的趋势一致。随着光强度的增加,扭转致动器的变形随着光强度的增加而增加。因此,由光静电混合驱动方法驱动的光响应扭转致动器可以有效地控制响应速度快速的变形;同时,可以忽略滞后现象。

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