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首页> 外文期刊>Journal of Micromechanics and Microengineering >Strain and pressure sensing tubes based on conductive fluids and their applications on a flexible finger
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Strain and pressure sensing tubes based on conductive fluids and their applications on a flexible finger

机译:基于导电流体的应变和压力传感管及其在柔性手指上的应用

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摘要

Soft and flexible sensors have great potential to be integrated into robotic mechanisms, for example, the prosthetic finger. Liquid conductive metals as a promising class of materials could be used to fabricate these sensors because they can undergo large deformations while retaining good electrical conductivity. Herein, commercial silicone surgical tubes with their own tubular structure are applied to fabricate strain and pressure sensing units/tubes, instead of micro-channels made by traditional shape deposition manufacturing. Many issues such as complicated fabrication process and low success rate could be solved by using the simple approach. Sensing tubes with desired patterns or multi-tube helical structures could be arranged when detecting different physical quantities. Besides, helical structures could increase the absolute resistance change evidently and then facilitate signal measurements. As a demonstration of their potential, the as-fabricated sensing tubes were used as joint curvature and three-axis contact force sensors at the fingertip integrated into a prosthetic finger, which provided better assessment of finger perception.
机译:柔软和柔性传感器具有很大的潜力,可以集成到机器人机制中,例如假肢。液体导电金属作为承受的一类材料,可用于制造这些传感器,因为它们可以在保持良好的导电性的同时进行大变形。这里,施加具有它们自己的管状结构的商业硅树脂外科手术管以制造应变和压力感测单元/管,而不是通过传统形状沉积制造制造的微通道。通过使用简单的方法可以解决许多问题,例如复杂的制造过程和低成功率。当检测到不同的物理量时,可以布置具有所需图案或多管螺旋结构的感测管。此外,螺旋结构可以显着提高绝对电阻,然后促进信号测量。作为其潜力的演示,用作指尖的弯曲曲率和三轴接触力传感器的展示,该指尖整合到假手指中,提供了更好地评估手指感知。

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