基于谐振频移的压电振动悬臂式触觉传感器曲率控制微结构提高三轴灵敏度

Hikaru Tanaka, Hirotoshi Kii, Yi Yang, K. Yamashita, M. Noda
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引用次数: 0

摘要

为提高三轴触觉传感的精度,设计并制造了一种简化的振动悬臂梁弯曲结构。先前开发的悬臂梁有两个振动部分,而新的悬臂梁只有一个振动部分和一个曲率半径小的紧凑挂钩。在触觉传感仿真中,新结构有望将触觉估计误差降低到5.7%,不到之前结构的一半。通过对悬臂中各层的热处理优化,确定了具有两种不同曲率的新型结构的制造条件和工艺。装配式结构显示出合适的曲率组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Curvature controlled microstructures for improved triaxial sensitivity in piezoelectric vibratory cantilever-type tactile sensors based on resonant frequency shift
A simplified curved structure of vibratory cantilevers has been designed and fabricated for precision improvement of triaxial tactile sensing. While the previously developed cantilever had two vibratory parts, the new one has one vibratory part and a compact hook with a small curvature radius. In tactile sensing simulation, the new structure has been expected to reduce the tactile estimation error down to 5.7%, less than a half of that of the previous one. Fabrication condition and process have been developed for the new structure having two different curvatures through optimizations of thermal treatment of the layers in the cantilever. Fabricated structure has shown the suitable curvature combination.
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