Relationship between bias spring parameters and output performances of SMA actuators
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摘要: 偏置弹簧参数对形状记忆合金(SMA,Shape Memory Alloy)驱动器的输出性能有着非常大的影响.为获得其影响规律,通过试验研究了不同偏置弹簧刚度以及不同弹簧预压缩载荷下,SMA驱动器的作动位移、响应速度的变化规律以及循环次数对驱动器性能的影响规律.试验结果表明,驱动器最大作动位移及响应速度随弹簧刚度或预载的增大而降低;驱动器性能在前几次循环中衰减较大,随着循环进行性能逐渐趋于稳定;弹簧预载的增大使驱动器性能稳定所需的循环次数减少,而弹簧刚度对驱动器输出性能的循环变化规律影响不大.Abstract: The parameters of the bias spring have great impacts on the output performances of the shape memory alloy (SMA) actuator. To investigate the rules of influences, the output stroke and response rate of a SMA actuator with different bias spring stiffness and precompression load were studied. The output degradation due to cyclic actuation was also investigated. Experimental results show that the strokes and response rates decrease with the increase of preloads or stiffness. The performance of the actuator degrades significantly in the first few cycles and stabilizes eventually with the increase of the number of cycles. The test results also indicate that less cycling is needed to stabilize the actuator when the preload is increased, and the stiffness seems to affect the cyclic performance of the actuator slightly.
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Key words:
- shape memory alloys /
- actuator /
- cyclic performance /
- locking device /
- bias spring
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[1] 高滨. 形状记忆合金在航天器分离机构上的应用[J].航天返回与遥感,2005,26(1):48-52. Gao B.Shape memory alloys and their application to aerospace separation mechanisms[J].Spacecraft Recovery & Remote Sensing,2005,26(1):48-52(in Chinese). [2] 赵连城, 郑玉峰.形状记忆与超弹性镍钛合金的发展和应用[J].中国有色金属学报,2004,14(1):323-326. Zhao L C,Zheng Y F.Development and applications of nickel-titanium alloys with shape memory effect and superelasticity[J].The Chinese Journal of Nonferrous Metals,2004,14(1):323-326(in Chinese). [3] Zhang X Y, Yan X J,Yang Q L.Design and experimental validation of compact,quick-response shape memory alloy separation device[J].Journal of Mechanical Design,2014,136(1): 011009. [4] 贺玉珊. 形状记忆效应[J].教学仪器与实验,1990,6(2):34-36. He Y S.Shape memory effect[J].Educational Equipment and Experiment,1990,6(2):34-36(in Chinese). [5] 张义辽. SMA直线驱动器结构原理及实验研究[D].合肥:中国科学技术大学,2010. Zhang Y L.The theory of structure and experimental research on SMA linear actuator[D].Hefei: University of Science and Technology of China,2010(in Chinese). [6] 王宏. 用于仿生推进的SMA驱动器研究[D].哈尔滨:哈尔滨工程大学,2007. Wang H.Research on SMA actuator applied to biomimetic propel[D].Harbin:Harbin Engineering University,2007(in Chinese). [7] Zhang X Y, Yan X J.Continuous rotary motor actuated by multiple segments of shape memory alloy wires[J].Journal of Materials Engineering and Performance,2012,21(12):2643-2649. [8] 杨汝清,桑子刚. 机器人形状记忆合金(SMA)驱动器及其控制探讨[J].机器人,1990,12(6):50-53. Yang R Q,Sang Z G.The explore of the shape memory alloy(SMA) actuator and its control on robot[J].Robot,1990,12(6): 50-53(in Chinese). [9] 熊克,沈文罡. SMA丝缠绕角对扭力驱动器驱动性能影响的试验研究[J].机械工程学报,2004,39(12):123-128. Xiong K,Shen W G.Experimental research on the relationship between SMA wire wound angle and SMA torsion actuator primary performances[J].Chinese Journal of Mechanical Engineering,2004,39(12):123-128(in Chinese). [10] Lee H J, Lee J J.Evaluation of the characteristics of a shape memory alloy spring actuator[J].Smart Materials and Structures,2000,9(6):817-823. [11] 唐森,董二宝, 许雯,等.新型SMA扭转驱动器设计及实验研究[J].功能材料与器件学报,2011,17(4):407-411. Tang S,Dong E B,Xu W,et al.Design and experimental study of new SMA rotary actuator[J].Journal of Functional Materials and Devices,2011,17(4):407-411(in Chinese). [12] 王社良,薛凌云, 苏三庆.形状记忆合金驱动器的力学性能[J].西安建筑科技大学学报,1999,31(3):233-236. Wang S L,Xue L Y,Su S Q.Mechanical behavior of shape memory alloy actuator[J].Journal of Xi'an University of Architecture & Technology,1999,31(3):233-236(in Chinese). [13] 李宝成,董二宝, 李永新,等.新型SMA丝致动器的结构设计与实验研究[J].机械与电子,2010(1):7-8. Li B C,Dong E B,Li Y X,et al.Structrue design and experiment research of a novel actuator based on SMA wire[J].Machinery & Electronics,2010(1):7-8(in Chinese). [14] 闫晓军,张小勇, 聂景旭,等.采用SMA驱动的小型空间磁悬浮飞轮锁紧机构[J].北京航空航天大学学报,2011,37(2): 127-131. Yan X J,Zhang X Y,Nie J X,et al.Prototype SMA actuated locking device for small space magnetic bearing flywheels[J].Journal of Beijing University of Aeronautics and Astronautics,2011,37(2):127-131(in Chinese). [15] Zhang X Y, Yan X J,Zhang S W,et al.Development of a novel shape memory alloy-actuated resettable locking device for magnetic bearing reaction wheel[J].Review of Scientific Instruments,2014,85(1):015006.
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