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Entangled Network of Carbon Nanotubes Embedded in Polyurethane and its Use for Body Kinematics and Joint Flexion Sensing

机译:嵌入聚氨酯中嵌入聚氨酯的碳纳米管网络及其用于体内运动学和关节屈曲传感的用途

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Monitoring body kinematics and joint flexion has fundamental relevance in orthopedics and rehabilitation. The used sensing element is prepared from a highly-deformable polymer composite composed of a network of entangled electrically-conductive carbon nanotubes embedded in elastic polyurethane. The composite is prepared by an innovative procedure in which the non-woven polyurethane filtering membrane and the carbon nanotube cake are integrated by compression molding. As an example of the composite use as a strain sensor, human knee flexion and its cyclic movement is monitored, that may be applicable in athletic training as well as in orthopedics and rehabilitation.
机译:监测身体运动学和关节屈曲在骨科和康复中具有基本相关性。使用的传感元件由由嵌入弹性聚氨酯的缠结的导电碳纳米管网络组成的高度可变形的聚合物复合材料制备。复合材料通过创新的程序制备,其中非织造聚氨酯过滤膜和碳纳米管滤饼通过压缩成型整合。作为作为应变传感器的复合用途的示例,监测人体膝关节弯曲及其循环运动,可适用于运动训练以及矫形和康复。

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