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Measurement of Shear Strain Field in a Soft Material Using a Sensor System Consisting of Distributed Piezoelectric Polymer Film

机译:使用由分布的压电聚合物薄膜组成的传感器系统测量软材料中的剪切应变场

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摘要

Measurement of the internal stress and strain distributions within soft materials is necessary in the field of skin contact safety. However, conventional interactive force sensors cannot efficiently obtain or estimate these distributions. Herein, a shear strain sensor system consisting of distributed built-in piezoelectric polyvinylidene fluoride (PVDF) polymer films was developed to measure the internal shear strain field of a soft material. A shear strain sensing model was mathematically established, based on the piezoelectricity and mechanical behavior of a bending cantilever beam, to explain the sensing principle. An experiment in three-dimensional measurement of the shear strain distribution within an artificial skin was designed and conducted to assess the sensitivity of the sensing model. This sensor system could visualize the shear strain field and was sensitive to different contact conditions. The measurement results agreed well with the results of numerical simulation of the substrate, based on contact mechanics. The proposed sensor system was confirmed to provide a new sensing method for the field of shape analysis. The sensor system can be applied to develop sufficiently sensitive electronic skin and can significantly contribute to skin damage analysis and skin contact safety assessment.
机译:在皮肤接触安全领域,必须测量软材料内部的内部应力和应变分布。但是,常规的交互式力传感器不能有效地获得或估计这些分布。本文中,开发了一种由分布式内置式压电聚偏二氟乙烯(PVDF)聚合物薄膜组成的剪切应变传感器系统,以测量软材料的内部剪切应变场。基于弯曲悬臂梁的压电特性和力学行为,通过数学方法建立了剪切应变传感模型,以解释传感原理。设计并进行了三维测量人造皮肤内剪切应变分布的实验,以评估传感模型的敏感性。该传感器系统可以可视化剪切应变场,并且对不同的接触条件敏感。基于接触力学,测量结果与基板的数值模拟结果非常吻合。所提出的传感器系统被确认为形状分析领域提供了一种新的传感方法。该传感器系统可以用于开发足够敏感的电子皮肤,并且可以大大有助于皮肤损伤分析和皮肤接触安全性评估。

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