Design and Test of a Micro-displacement Actuator Based on Giant Magnetostrictive Material | |
Liang Shao; Dehua Yang; Bintang Yang; Kunxin Chen | |
2009-10-20 | |
会议录名称 | Smart Materials and Nanotechnology in Engineering |
卷号 | 7493 |
期号 | 7493 |
页码 | Vol.7493 3U-1-11 |
会议日期 | 2009-7-8 |
会议地点 | Weihai, China |
会议主办者 | The International Society for Optical Engineering |
出版者 | SPIE |
摘要 |
To meet the performance requirements of co-focusing and co-phasing of segmented mirror active optics (SMAO) in modern astronomical telescope, micro-displacement actuators with nanometer resolution and millimeter stroke are necessary. The design and test of a micro-displacement actuator based on giant magnetostrictive material is present in this paper. The actuator’s main components, such as giant magnetostrictive drive core, displacement pantograph mechanism and output guide mechanism, are discussed in detailed. The giant magnetostrictive drive mechanism generally may offer nanometer resolution and micron stroke. A displacement/stroke pantograph mechanism is designed with absolutely sealed flexible hydraulic structure (ASFHS) to enlarge the stroke. In addition, a secondary giant magnetostrictive drive mechanism is integrated to serve final resolution of final displacement output. In view of flexure exhibiting excellent mechanical properties free of friction, clearance and lubrication, a flexure guide mechanism with the capacity of excellent lateral load is designed to fulfill linear displacement output steadily. The sub-systems like the giant magnetostrictive drive core and displacement pantograph mechanism have been tested before integration of the whole actuator. The final test of the actuator is carried out with dual frequency laser interferometer at lab. Besides, to meet technical requirements of future extremely large telescope, further development issues mainly related to application practice of the actuator is discussed at the end. |
关键词 | Micro-displacement Actuator Giant Magnetostrictive Material Displacement/stroke Pantograph Mechanism Astronomical Telescope Nanometer Resolution. |
学科领域 | 天文技术与方法 |
文献类型 | 会议论文 |
条目标识符 | http://ir.niaot.ac.cn/handle/114a32/572 |
专题 | 会议论文 |
推荐引用方式 GB/T 7714 | Liang Shao,Dehua Yang,Bintang Yang,et al. Design and Test of a Micro-displacement Actuator Based on Giant Magnetostrictive Material[C]:SPIE,2009:Vol.7493 3U-1-11. |
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