The soft liquid metal-based pressure sensor based on resistance-capacitance coupling

Q3 Medicine
Kang Sun , Xinxin Zhang , Shuting Liang , Liangtao Li , Caicai Jiao , Qian Wang , Wuliang Chen , Liang Hu , Yubo Fan
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引用次数: 0

Abstract

With the rapid development of the intelligent technology, flexible sensors have widely applied in wearable electronic products, human-computer interaction, soft robots, health care and other emerging fields. At present, mechanical sensors are based on resistance or capacitance changes alone to achieve a perceived response to force. Meanwhile the methods of flexible mechanical sensors to improve the sensitivity are mainly micro-structuring of the electrode or dielectric layer, which is a complicated process and less probing of the electrode shape. Therefore, this paper proposes a flexible sensor based liquid metal to measure mechanics through resistive-capacitive coupling. Through testing, we obtained the optimal preparation scheme. We also explored the mechanical properties of the sensor design with different combinations of liquid metal electrode shapes using simulation, and then tested the mechanical properties of the double helix liquid metal sensor prepared according to the model structure. With resistive-capacitive coupling, the sensor can achieve a sensitivity of 0.4653 ​kPa−1 with a response range of 10∼343 ​Pa, and it has good tensile and compressive response, and cyclic stability. This study provides a new structural design direction for the subsequent application of liquid metal in flexible sensing with high sensitivity.
基于电阻-电容耦合的软液金属压力传感器
随着智能技术的飞速发展,柔性传感器已广泛应用于可穿戴电子产品、人机交互、软机器人、医疗保健等新兴领域。目前,机械传感器仅基于电阻或电容的变化来实现对力的感知响应。同时,柔性机械传感器提高灵敏度的方法主要是电极或介质层的微结构,这是一个复杂的过程,对电极形状的探测较少。因此,本文提出了一种基于液态金属的柔性传感器,通过电阻-电容耦合来测量力学。通过试验,得到了最佳的制备方案。我们还通过仿真探讨了不同液态金属电极形状组合的传感器设计的力学性能,然后测试了根据模型结构制备的双螺旋液态金属传感器的力学性能。通过阻容耦合,传感器的灵敏度为0.4653 kPa−1,响应范围为10 ~ 343 Pa,具有良好的拉伸和压缩响应以及循环稳定性。本研究为后续液态金属在高灵敏度柔性传感中的应用提供了新的结构设计方向。
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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来源期刊
Medicine in Novel Technology and Devices
Medicine in Novel Technology and Devices Medicine-Medicine (miscellaneous)
CiteScore
3.00
自引率
0.00%
发文量
74
审稿时长
64 days
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