铰链
执行机构
机制(生物学)
压电
打滑(空气动力学)
结构工程
材料科学
流离失所(心理学)
电压
顺应机制
控制理论(社会学)
有限元法
声学
工程类
复合材料
计算机科学
电气工程
物理
人工智能
航空航天工程
心理学
量子力学
心理治疗师
控制(管理)
作者
Qi Gao,Meng He,Xiaohui Lu,Chi Zhang,Tinghai Cheng
标识
DOI:10.1177/1045389x19862376
摘要
This article presented a new type of stick-slip piezoelectric actuator based on an asymmetrical flexure hinge driving mechanism. The key of the driving mechanism was a four-bar mechanism with different minimum thicknesses of right-circle flexure hinges. Combined with a symmetrical indenter, the asymmetrical flexure hinge driving mechanism generated controllable tangential displacement by changing the locking force. Therefore, the simple structured stick-slip piezoelectric actuator achieved considerable improvements especially in output speed and efficiency. In order to obtain improved actuator properties, the minimum thicknesses of asymmetrical flexure hinge driving mechanism, the tangential and normal displacements of the indenter were analyzed and investigated by finite element method. A prototype was fabricated and experiment investigation of the actuator characteristics was presented. Testing results indicated that the actuator achieved the maximum velocity of 15.04 mm/s and its maximum load reached 440 g under a voltage of 100 V p-p and a frequency of 490 Hz. The maximum efficiency of the actuator was 3.66% with a load of 280 g under a locking force of 5 N and the actuated velocity of 10.17 mm/s.
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