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A Highly Sensitive and Flexible Capacitive Pressure Sensor Based on a Porous Three-Dimensional PDMS/Microsphere Composite

机译:基于多孔三维PDMS /微球复合材料的高灵敏柔性电容式压力传感器

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摘要

In recent times, polymer-based flexible pressure sensors have been attracting a lot of attention because of their various applications. A highly sensitive and flexible sensor is suggested, capable of being attached to the human body, based on a three-dimensional dielectric elastomeric structure of polydimethylsiloxane (PDMS) and microsphere composite. This sensor has maximal porosity due to macropores created by sacrificial layer grains and micropores generated by microspheres pre-mixed with PDMS, allowing it to operate at a wider pressure range (~150 kPa) while maintaining a sensitivity (of 0.124 kPa in a range of 0~15 kPa) better than in previous studies. The maximized pores can cause deformation in the structure, allowing for the detection of small changes in pressure. In addition to exhibiting a fast rise time (~167 ms) and fall time (~117 ms), as well as excellent reproducibility, the fabricated pressure sensor exhibits reliability in its response to repeated mechanical stimuli (2.5 kPa, 1000 cycles). As an application, we develop a wearable device for monitoring repeated tiny motions, such as the pulse on the human neck and swallowing at the Adam’s apple. This sensory device is also used to detect movements in the index finger and to monitor an insole system in real-time.
机译:近年来,基于聚合物的柔性压力传感器由于其各种应用而引起了很多关注。基于聚二甲基硅氧烷(PDMS)和微球复合材料的三维介电弹性体结构,提出了一种高灵敏度和柔性的传感器,该传感器能够连接到人体。由于牺牲层晶粒产生的大孔以及与PDMS预混合的微球产生的微孔,该传感器具有最大的孔隙率,从而使其能够在更宽的压力范围(〜150 kPa)下运行,同时保持灵敏度(0.124 kPa在0〜15 kPa)比以前的研究好。孔隙最大化会导致结构变形,从而可以检测到压力的微小变化。除了表现出快速的上升时间(〜167 ms)和下降时间(〜117 ms),以及出色的重现性外,所制造的压力传感器还表现出对重复的机械刺激(2.5 kPa,1000个循环)的响应可靠性。作为一项应用,我们开发了一种可穿戴设备,用于监视反复的微小运动,例如人脖子上的脉搏和亚当苹果的吞咽动作。该传感设备还用于检测食指的运动并实时监控鞋垫系统。

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