首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Thrust Force Characteristics of Propulsion Mechanism in Fluid Using Variable-Bending-Stiffness Fin Modeled on Ciliary Movement
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Thrust Force Characteristics of Propulsion Mechanism in Fluid Using Variable-Bending-Stiffness Fin Modeled on Ciliary Movement

机译:基于纤毛运动的可变弯曲刚度鳍在流体推进机构的推力特性

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摘要

The application of dynamics observed in organisms is very instructive in the field of engineering. We noted the utility of ciliary movement for propulsion in fluid, and developed an enlarged propulsion mechanism modeled on ciliary movement. To realize the effective stroke and recovery stroke of ciliary movement, the mechanism was equipped with a motor on its base and a variable-bending-stiffness fin. The variable-bending-stiffness fin consists of two flexible sheets and electromagnets. Electromagnets control the frictional force between the two flexible sheets. Bending stiffness is controlled dynamically by changing the frictional force between the two flexible sheets. We discussed the thrust force characteristics of the mechanism in water and highly viscous liquid paraffin.
机译:在生物中观察到的动力学的应用在工程领域中非常有启发性。我们注意到睫状运动对推动液体的作用,并开发了以睫状运动为模型的扩大的推进机制。为了实现纤毛运动的有效行程和恢复行程,该机构在其基座上配备了一个电机和一个可变弯曲刚度的鳍片。可变弯曲刚度翅片由两个柔性板和电磁体组成。电磁体控制两个柔性板之间的摩擦力。通过改变两个柔性片之间的摩擦力来动态地控制弯曲刚度。我们讨论了该机制在水和高粘度液体石蜡中的推力特性。

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