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具有实验比较的软质聚氯乙烯凝胶传感器多物理场建模框架

Multiphysics Modeling Framework for Soft PVC Gel Sensors with Experimental Comparisons.

作者信息

Neubauer Justin, Kim Kwang J

机构信息

Department of Mechanical Engineering, University of Nevada, Las Vegas, NV 89154, USA.

出版信息

Polymers (Basel). 2023 Feb 9;15(4):864. doi: 10.3390/polym15040864.

Abstract

Polyvinyl chloride (PVC) gels have recently been found to exhibit mechanoelectrical transduction or sensing capabilities under compressive loading applications. This phenomenon is not wholly understood but has been characterized as an adsorption-like phenomena under varying amounts and types of plasticizers. A different polymer lattice structure has also been tested, thermoplastic polyurethane, which showed similar sensing characteristics. This study examines mechanical and electrical properties of these gel sensors and proposes a mathematical framework of the underlying mechanisms of mechanoelectrical transduction. COMSOL Multiphysics is used to show solid mechanics characteristics, electrostatic properties, and transport of interstitial plasticizer under compressive loading applications. The solid mechanics takes a continuum mechanics approach and includes a highly compressive Storakers material model for compressive loading applications. The electrostatics and transport properties include charge conservation and a Langmuir adsorption migration model with variable diffusion properties based on plasticizer properties. Results show both plasticizer concentration gradient as well as expected voltage response under varying amounts and types of plasticizers. Experimental work is also completed to show agreeance with the modeling results.

摘要

最近发现聚氯乙烯(PVC)凝胶在压缩载荷应用下表现出机电转换或传感能力。这种现象尚未完全理解,但已被表征为在不同数量和类型的增塑剂下类似吸附的现象。还测试了一种不同的聚合物晶格结构——热塑性聚氨酯,它表现出类似的传感特性。本研究考察了这些凝胶传感器的力学和电学性质,并提出了机电转换潜在机制的数学框架。使用COMSOL Multiphysics来展示在压缩载荷应用下的固体力学特性、静电特性以及间隙增塑剂的传输。固体力学采用连续介质力学方法,包括用于压缩载荷应用的高压缩斯托克斯材料模型。静电和传输特性包括电荷守恒以及基于增塑剂特性具有可变扩散特性的朗缪尔吸附迁移模型。结果显示了在不同数量和类型的增塑剂下增塑剂浓度梯度以及预期的电压响应。还完成了实验工作以表明与建模结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a267/9966433/78dc387eee72/polymers-15-00864-g001.jpg

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