首页> 美国卫生研究院文献>Applied Bionics and Biomechanics >Magnetostrictive Bioinspired Whisker Sensor Based on Galfenol Composite Cantilever Beam Realizing Bidirectional Tactile Perception
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Magnetostrictive Bioinspired Whisker Sensor Based on Galfenol Composite Cantilever Beam Realizing Bidirectional Tactile Perception

机译:基于Galfenol复合悬臂梁的磁致伸缩生物晶须传感器实现双向触觉。

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摘要

A magnetostrictive bioinspired whisker sensor based on a galfenol/beryllium-bronze/galfenol composite cantilever beam was developed in this work. According to the new design concept, the proposed whisker can output positive and negative voltages under different bending directions. Besides, the proposed whisker sensor can realize the bidirectional distance and microforce perception. Using the classical beam theory, a theoretical model was used to predict the output performance of the whisker. An experimental system was established to test the whisker's output performance. In the experiment, the designed whisker, compared with a traditional unimorph whisker, displayed an output voltage range of −240 to 240 mV. The parameters were as follows: the distance was 0–22 mm, with the microforce sensing range of 9.8–2744 mN, the average distance was 10.90 mm/mV, and the force sensitivity was 11.4 mN/mV. At last, obstacle perception was applied. The experiment showed that the proposed whisker sensor can realize the bidirection tactile perception in one-dimensional space. The work expands the function of the magnetostrictive bioinspired whisker, acquiring the multi-information for single-sensor system.
机译:在这项工作中,开发了一种基于伽芬诺/铍青铜/伽芬诺复合悬臂梁的磁致伸缩生物晶须传感器。根据新的设计理念,所提出的晶须可以在不同的弯曲方向上输出正电压和负电压。此外,所提出的晶须传感器可以实现双向距离和微力感知。使用经典光束理论,使用理论模型来预测晶须的输出性能。建立了一个实验系统来测试晶须的输出性能。在实验中,与传统的单晶片晶须相比,设计的晶须显示的输出电压范围为-240至240 mV。参数如下:距离为0–22 mm,微力感应范围为9.8–2744 mN,平均距离为10.90 mm / mV,力敏感度为11.4 mN / mV。最后,应用障碍物感知。实验表明,所提出的晶须传感器可以在一维空间内实现双向触觉。这项工作扩展了磁致伸缩生物启发晶须的功能,获得了单传感器系统的多信息。

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