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Highly stretchable and sensitive liquid-type strain sensor based on a porous elastic rope/elastomer matrix composite structure

机译:基于多孔弹性绳/弹性体基质复合结构的高度可拉伸且灵敏的液体应变传感器

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In this study, we present a new liquid-type strain sensor based on porous elastic rope/elastomer matrix (PER/EM) composite structure. The liquid-impregnated porous elastic rope (LIPER) was immersed into a flexible silicone matrix to fabricate the sensor, making the manufacture process easy. The effect of liquid viscosity on the hysteresis of the sensor has been understood through selecting water, ethylene glycol and hydrogel as the sensing liquids. The most attractive performance of the PER/EM strain sensor is its ability to detect both stretching and compression deformations as well as to realize temperature sensing. Simultaneously, high stretch strain over 100% and pressure up to 612 kPa can be subjected. A minimum tensile strain of 0.5% and a minimum applied pressure of 5 kPa can be detected, indicating the good sensitivity of the as-fabricated strain sensor to the subtle deformation. In particular, our devices exhibited the excellent long-term durability after completing >6000 stretching-releasing cycles (100% strain) and >10000 compression-expansion cycles (50 kPa). On this basis, the PER/EM strain sensor was successfully employed to detect the full-scale human motion ranging from swallowing to joint bending. We further made a smart insole and achieved the real-time monitoring of walking, running and jumping. Our results show that the as-fabricated PER/EM strain sensor has the great potential for the applications in healthcare, human motion monitoring and electronic skin.
机译:在这项研究中,我们提出了一种基于多孔弹性绳/弹性体基质(PER / EM)复合结构的新型液体应变传感器。将浸有液体的多孔弹性绳(LIPER)浸入柔性硅树脂基质中以制造传感器,从而使制造过程变得容易。通过选择水,乙二醇和水凝胶作为传感液体,可以了解液体粘度对传感器滞后的影响。 PER / EM应变传感器最吸引人的性能是它能够检测拉伸和压缩变形以及实现温度感应。同时,可以承受超过100%的高拉伸应变和高达612 kPa的压力。可以检测到0.5%的最小拉伸应变和5 kPa的最小施加压力,这表明所制造的应变传感器对细微变形具有良好的灵敏度。特别是,我们的设备在完成> 6000次拉伸-释放循环(100%应变)和> 10000次压缩-膨胀循环(50 kPa)后,表现出出色的长期耐久性。在此基础上,PER / EM应变传感器成功地用于检测从吞咽到关节弯曲的整个人体运动。我们进一步制作了智能鞋垫,实现了步行,跑步和跳跃的实时监控。我们的结果表明,制成的PER / EM应变传感器在医疗保健,人体运动监测和电子皮肤中具有广阔的应用前景。

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