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Bidirectional actuation of buckled bistable beam using twisted string actuator

机译:扭曲弦致动器双向驱动屈曲双稳态梁

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摘要

A new actuation mechanism using the twisted string concept to trigger the snap-through of a bistable buckled beam to produce an effective on/off bistable actuator is proposed. The twisted string concept combined with a pin utilizes actuation moment to actuate a bistable beam. The required actuation loads are analytically formulated using the Euler-Bernoulli beam model and solved with the proposed solution algorithm. The actuation mechanism is fabricated to meet the 24.3 N mm actuation requirements. A prototype of the actuator was built, and its performance was evaluated. In a unidirectional actuation, an actuator response time of 104 ms was achieved. The overall response time of the actuator is affected by the length of the string. The twisted string mechanism was also placed in an antagonistic configuration to enable bidirectional actuation. The shape of the input voltage signal also affected the bidirectional performance of the actuator. The actuator produced an actuation bandwidth of 2 and 5 Hz with sine and square input voltages, respectively, while generating 10 mm output displacement.
机译:提出了一种新的驱动机制,该机制使用双绞线概念触发双稳态弯曲梁的卡扣,以产生有效的开/关双稳态执行器。绞线概念与销钉结合,利用驱动力矩来驱动双稳态梁。使用Euler-Bernoulli梁模型对所需的驱动负载进行了解析计算,并通过提出的求解算法对其进行了求解。致动机构的制造满足24.3 N mm的致动要求。制造了执行器的原型,并对其性能进行了评估。在单向执行机构中,执行机构的响应时间为104 ms。促动器的总响应时间受琴弦长度的影响。扭曲的弦线机制也被放置在一个对立配置,以实现双向驱动。输入电压信号的形状也影响执行器的双向性能。该执行器分别在正弦和平方输入电压下产生2和5 Hz的驱动带宽,同时产生10 mm的输出位移。

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