Characterization of the Repeatability and Sensitivity of the Quantum Tunneling Composites

Sharvari Dhote, K. Behdinan, J. Bian
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Abstract

The fast development and expansion of the robotics field and biomedical application in the last several decades have generated a growing interest in the flexible tactile sensing solutions. In this experimental study, the flexible sensor material is characterized by utilizing piezoresistive mechanism based on quantum tunneling composites. With attention to pressure-sensitivity of this composite, the effect of nickel powder filler ratio and sample thickness are systematically investigated. Electrical resistance and sensitivity of the QTC depend on the concentration and shape of nickel powder. There is a lower threshold of nickel powder concentration for the QTC to be sensitive under 500N force applied. With increasing nickel powder concentration, an elasticity of the QTC decreases, but stability, reproducibility, and sensitivity of the composite improved.
量子隧穿复合材料的可重复性和灵敏度表征
在过去的几十年里,机器人领域和生物医学应用的快速发展和扩大,使人们对柔性触觉传感解决方案的兴趣日益浓厚。在本实验研究中,利用基于量子隧道复合材料的压阻机制来表征柔性传感器材料。针对该复合材料的压敏性能,系统研究了镍粉填充比和样品厚度对复合材料压敏性能的影响。QTC的电阻和灵敏度取决于镍粉的浓度和形状。在施加500N力的情况下,QTC对镍粉浓度的敏感阈值较低。随着镍粉浓度的增加,QTC的弹性降低,但复合材料的稳定性、再现性和灵敏度提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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