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基于三维多孔结构和形状记忆聚合物的自恢复电容式压力传感器

Self-Restoring Capacitive Pressure Sensor Based on Three-Dimensional Porous Structure and Shape Memory Polymer.

作者信息

Park Byunggeon, Jung Young, Ko Jong Soo, Park Jinhyoung, Cho Hanchul

机构信息

Precision Mechanical Process and Control R&D Group, Korea Institute of Industrial Technology, 42-7, Baegyang-daero 804beon-gil, Sasang-gu, Busan 46938, Korea.

Graduate School of Mechanical Engineering, Pusan National University, Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan 46241, Korea.

出版信息

Polymers (Basel). 2021 Mar 8;13(5):824. doi: 10.3390/polym13050824.

Abstract

Highly flexible and compressible porous polyurethane (PU) structures have effectively been applied in capacitive pressure sensors because of the good elastic properties of the PU structures. However, PU porous structure-based pressure sensors have been limited in practical applications owing to their low durability during pressure cycling. Herein, we report a flexible pressure sensor based on a three-dimensional porous structure with notable durability at a compressive pressure of 500 kPa facilitated by the use of a shape memory polymer (SMP). The SMP porous structure was fabricated using a sugar templating process and capillary effect. The use of the SMP resulted in the maintenance of the sensing performance for 100 cycles at 500 kPa; the SMP can restore its original shape within 30 s of heating at 80 °C. The pressure sensor based on the SMP exhibited a higher sensitivity of 0.0223 kPa than a typical PU-based sensor and displayed excellent sensing performance in terms of stability, response time, and hysteresis. Additionally, the proposed sensor was used to detect shoe insole pressures in real time and exhibited remarkable durability and motion differentiation.

摘要

高度灵活且可压缩的多孔聚氨酯(PU)结构因其良好的弹性性能而有效地应用于电容式压力传感器。然而,基于PU多孔结构的压力传感器由于其在压力循环过程中的低耐久性而在实际应用中受到限制。在此,我们报道了一种基于三维多孔结构的柔性压力传感器,通过使用形状记忆聚合物(SMP),在500 kPa的压缩压力下具有显著的耐久性。SMP多孔结构是利用糖模板法和毛细管效应制备的。使用SMP使得在500 kPa下传感性能能够保持100个循环;SMP在80℃加热30 s内可恢复其原始形状。基于SMP的压力传感器比典型的基于PU的传感器具有更高的灵敏度,为每kPa 0.0223,并且在稳定性、响应时间和滞后方面表现出优异的传感性能。此外,所提出的传感器用于实时检测鞋垫压力,并表现出显著的耐久性和运动区分能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b490/7962847/e81040ee16d4/polymers-13-00824-g001.jpg

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