Abstract
In this work, we propose a novel wireless actuator which is composed of magnetostrictive material/copper bi-layer film. The actuator can be controlled to move like a snake bi-directionally along a pipe by tuning the frequency of external magnetic field near its first order resonant frequency. The governing equation for the actuator is established and the vibration mode shape function is derived. Theoretical analysis shows that motion of the actuator is achieved by asymmetric vibration mode shape, specific vibration bending deformation, and effective net total impacting force. The simulation and experimental results well confirm the theoretical analysis. This work provides contribution to the development of wireless micro robots and autonomous magnetostrictive sensors.
Cite
CITATION STYLE
Zhang, K., Zhu, Q., & Chai, Y. (2016). A novel frequency tuned wireless actuator with snake-like motion. AIP Advances, 6(7). https://doi.org/10.1063/1.4958877
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