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用于监测动物皮肤的具有各向异性结构的软应变计的数值研究。

Numerical Investigation of Auxetic Textured Soft Strain Gauge for Monitoring Animal Skin.

机构信息

Department of Civil, Construction, and Environmental Engineering, Iowa State University, Ames, IA 50011, USA.

Harvard John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA.

出版信息

Sensors (Basel). 2020 Jul 28;20(15):4185. doi: 10.3390/s20154185.

Abstract

Recent advances in hyperelastic materials and self-sensing sensor designs have enabled the creation of dense compliant sensor networks for the cost-effective monitoring of structures. The authors have proposed a sensing skin based on soft polymer composites by developing soft elastomeric capacitor (SEC) technology that transduces geometric variations into a measurable change in capacitance. A limitation of the technology is in its low gauge factor and lack of sensing directionality. In this paper, we propose a corrugated SEC through surface texture, which provides improvements in its performance by significantly decreasing its transverse Poisson's ratio, and thus improving its sensing directionality and gauge factor. We investigate patterns inspired by auxetic structures for enhanced unidirectional strain monitoring. Numerical models are constructed and validated to evaluate the performance of textured SECs, and to study their performance at monitoring strain on animal skin. Results show that the auxetic patterns can yield a significant increase in the overall gauge factor and decrease the stress experienced by the animal skin, with the re-entrant hexagonal honeycomb pattern outperforming all of the other patterns.

摘要

最近在超弹性材料和自感传感器设计方面的进展使得可以创建密集的顺应性传感器网络,以经济有效的方式监测结构。作者通过开发软弹性体电容器 (SEC) 技术提出了一种基于软聚合物复合材料的传感皮肤,该技术将几何变形转换为可测量的电容变化。该技术的一个局限性在于其低应变系数和缺乏传感方向性。在本文中,我们通过表面纹理提出了一种波纹 SEC,通过显著降低其横向泊松比来提高其性能,从而改善其传感方向性和应变系数。我们研究了受各向异性结构启发的图案,以实现增强的单向应变监测。构建并验证了数值模型,以评估纹理化 SEC 的性能,并研究其在监测动物皮肤应变方面的性能。结果表明,各向异性图案可以显著提高整体应变系数,并减少动物皮肤所承受的压力,其中凹入式六边形蜂巢图案优于所有其他图案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f64f/7435771/bbce2f3e6323/sensors-20-04185-g001.jpg

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