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A compact bimorph rotary piezoelectric actuator with customized small power supply
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作者 DENG Jie LIU DaQing +1 位作者 WANG WeiYi LIU YingXiang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2024年第4期1185-1195,共11页
Inertial piezoelectric actuators are widely applied in precision devices with simple structure and accurate movement.However,existing inertial piezoelectric actuators still face the challenges of rollback motion and b... Inertial piezoelectric actuators are widely applied in precision devices with simple structure and accurate movement.However,existing inertial piezoelectric actuators still face the challenges of rollback motion and bulky power supply.In this work,an alternate excitation strategy and a customized small power supply for a bimorph rotary piezoelectric actuator(BRPA)are proposed to solve the problems.The BRPA prototype is designed with a bipedal symmetrical structure,measuring 35 mm in height and 32 mm in diameter,which has a maximum rotation velocity of 0.247 rad/s and a resolution of 0.66μrad.Thanks to the bipedal symmetrical structure,the friction directions between the driving feet and the rotor can be coordinated to suppress the rollback.The rollback ratio is almost zero when the phase difference of the exciting signal is set as 180°.The customized power supply is designed and manufactured,whose size is 58 mm×56 mm×46 mm.It can output signals for the single step mode and the continuous mode,and they are adopted to excite BRPA to achieve a small stroke with one single step and a large stroke with continuous step,respectively.Then,an experimental system for optical fiber alignment is developed based on the BRPA and the customized small power supply,the experiment has verified the practicability of this work in the precision fields,especially in the miniaturized precision systems. 展开更多
关键词 inertial piezoelectric actuator customized small power supply single step mode continuous mode rollback suppression miniaturized precision system
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相变动力驱动技术在智能电器中的应用研究
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作者 冯运福 《电器与能效管理技术》 2015年第16期31-34,共4页
以材料相变过程产生的能量为技术原理研发了一种新型的高能量密度、小体积、低成本、高可靠性的微型驱动器件(MPA),用于实现现有断路器的电控合闸驱动。介绍了MPA工作原理、研究进展以及在智能电器中的应用模型结构,为智能电器的设计开... 以材料相变过程产生的能量为技术原理研发了一种新型的高能量密度、小体积、低成本、高可靠性的微型驱动器件(MPA),用于实现现有断路器的电控合闸驱动。介绍了MPA工作原理、研究进展以及在智能电器中的应用模型结构,为智能电器的设计开发探索出一个新的方向。 展开更多
关键词 相变动力 微型驱动器 智能断路器 自动合闸
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