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Fabricating a smart clothing system based on strain-sensing yarn and novel stitching technology for health monitoring 被引量:1
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作者 TANG Jian WU YuTing +4 位作者 MA ShiDong ZHANG YuMin XU RuoJie YAN Tao PAN ZhiJuan 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2024年第2期587-596,共10页
Various yarn-shaped flexible strain sensors have recently been developed.However,research is lacking on additive manufacturing for smart clothing for integrating yarn sensors with commercial garments.Herein,a strain-s... Various yarn-shaped flexible strain sensors have recently been developed.However,research is lacking on additive manufacturing for smart clothing for integrating yarn sensors with commercial garments.Herein,a strain-sensing yarn is sewn into a piece of fabric through a novel stitching technique,and the influence of the stitching method and needle pitch on the sensing performance is investigated using finite element analysis(FEA).The sensing performance could be improved when the sensing yarn is self-locked in the fabric at the needle eyes,and the needle pitch was reduced to 0.5 cm,which is attributed to the enhanced stress and strain concentration.Meanwhile,the composite sensing fabric featured outstanding performance,including a low detection limit(0.1%),rapid response(280 ms),excellent durability(10000 cycles),and high stability(negligible drift and frequency independence).In addition,the remarkable wear resistance,washability,and anti-interference to ambient humidity and perspiration were obtained.Therein,the optimal stitch trace lengths of sensing yarn for detecting elbow motion,breathing,and heartbeats are discussed.Finally,a smart clothing system composed of smart clothing,data acquisition unit,and mobile APP was developed to simultaneously detect human movement and physiological signals.This work provides a reference to produce intelligent garments based on yarn sensors for health monitoring. 展开更多
关键词 strain-sensing yarn composite sensing fabric smart clothing system stitching technology health monitoring
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基于拉压转换和变刚度斜坡结构的宽量程压缩传感结构
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作者 李朋阳 熊金华 +9 位作者 闫倩 丁仁杰 郑皓文 薛福华 赵旭 陈仲 刘宗林 唐志共 彭庆宇 赫晓东 《Science China Materials》 SCIE EI CAS CSCD 2024年第3期871-878,共8页
压力传感器仍然面临着将高灵敏度与宽检测范围相结合的挑战.基于此,我们设计了一种拉-压转换(TC)结构,并将其与变刚度策略相结合来制造压力传感器件.该结构能够将二维可拉伸材料的传感性能转换为三维可压缩设备的传感性能.传感和机械性... 压力传感器仍然面临着将高灵敏度与宽检测范围相结合的挑战.基于此,我们设计了一种拉-压转换(TC)结构,并将其与变刚度策略相结合来制造压力传感器件.该结构能够将二维可拉伸材料的传感性能转换为三维可压缩设备的传感性能.传感和机械性能可以使用模拟和理论计算进行设计.斜面结构能够在24.3 N范围内提供线性传感.变刚度设计策略使传感器能够以高灵敏度(3.5 N^(-1))感知较小载荷,并具有宽的检测范围(0.002–24.300 N,扩展范围82.6 N).此外,该传感结构可以在水下环境中稳定工作.这种使用二维可拉伸应变传感器作为传感单元来开发压缩传感装置的设计策略将为未来提供新的思路. 展开更多
关键词 NANOCOMPOSITES strain-sensing film pressure sensor 3D printing variable stiffness structures
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