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Highly stable soft strain sensor based on Gly-KCl filled sinusoidal fluidic channel for wearable and water-proof robotic applications

机译:基于GLY-KCL填充正弦流体通道的高度稳定的软质量传感器,用于可穿戴防水机器人的机器人应用

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摘要

A highly stretchable, stable and linear fluidic strain sensor has been developed using cost-effective and simple fabrication process. A biocompatible composite of glycerol and potassium chloride has been used as the conductive sensing material which is infilled in 5-half cycles sinusoidal channel made of elastomer using 3D printed mold. High sensitivity with hysteresis of 4.23% and speed of 5 Hz were achieved due to less viscous composite and optimized sensor design. The fabricated sensor exhibited outstanding resistive response up to 100% stretching and gauge factor of 2.7. Device was tested on 8000 cycles at 25% strain. The optimization of the design was performed on COMSOL 5.4 using FEA tool. Sensor's characterization in different environmental conditions was successfully performed. Finally device was used as a feedback sensor for underwater robotic angular movement detections and personnel wearable device. The results highly favor our proposed sensor to be used in high end applications.
机译:使用具有成本效益和简单的制造工艺开发了一种高度可伸缩,稳定和线性的流体应变传感器。甘油和氯化钾的生物相容性复合材料已被用作使用3D印刷模具由弹性体制成的5-半循环正弦通道的导电感测材料。由于粘性复合材料和优化的传感器设计较少,实现了4.23%滞后和5Hz速度的高灵敏度。制造的传感器具有突出的电阻响应,高达100%拉伸和表格因子为2.7。在25%菌株下测试8000个循环的装置。使用FEA工具对COMSOL 5.4进行设计的优化。传感器的表征在不同的环境条件下进行了成功进行。最后用作水下机器人角运动检测和人员可穿戴设备的反馈传感器。结果高度利用我们所提出的传感器用于高端应用。

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