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Design, development, and characteristics of an in-shoe triaxial pressure measurement transducer utilizing a single element of piezoelectric copolymer film

机译:鞋内三轴压力测量换能器的设计,开发和特性,利用压电共聚物膜的单个元素

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摘要

In gait analysis, there is growing awareness of the need to simultaneously measure shear and vertical forces for the diagnosis and treatment assessment of pathological foot disorders. This is especially the case in the measurement of the forces between the plantar surface of the foot and the shoe. Although clinical awareness of the need to simultaneously measure shear and vertical forces under the foot has increased little has been done to provide the technology. This is mainly due to the difficulty in constructing devices capable of carrying out this task in the in-shoe environment. The aim of this paper is to describe the development and characteristics of a miniature triaxial transducer measuring 10 /spl times/ 10 /spl times/ 2.7 mm and a weight of only 2 g. This transducer is capable of simultaneously measuring three orthogonal forces under any location of the plantar surface of the foot utilizing a single element piezoelectric copolymer P(VDF-TrFE). Transducer sensitivity, linearity, hysteresis, crosstalk and temperature dependence is presented. As well as in-shoe force measurement, this triaxial transducer could have other biomedical and general engineering applications, e.g., prosthetic interface forces, handgrip forces, sport, robotics, etc.
机译:在步态分析中,人们越来越意识到需要同时测量剪切力和垂直力来诊断和治疗病理性足部疾病。在测量脚的足底表面和鞋子之间的力时尤其如此。尽管临床上对同时测量脚下的剪切力和垂直力的需求的认识有所增加,但提供这种技术的工作很少。这主要是由于难以构造能够在鞋内环境中执行该任务的装置。本文的目的是描述尺寸为10 / spl次/ 10 / spl次/ 2.7 mm,重量仅为2 g的微型三轴换能器的发展和特性。该换能器能够利用单元素压电共聚物P(VDF-TrFE)在脚的足底表面的任何位置同时测量三个正交力。介绍了传感器的灵敏度,线性度,磁滞,串扰和温度依赖性。除鞋内力测量外,此三轴换能器还可以具有其他生物医学和通用工程应用,例如义肢界面力,握力,运动,机器人等。

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