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Novel Hybrid Polymer Composites with Graphene and MXene Nano-Reinforcements: Computational Analysis

机译:具有石墨烯和MXENE纳米增强剂的新型杂化聚合物复合材料:计算分析

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摘要

This paper presents a computational analysis on the mechanical and damage behavior of novel hybrid polymer composites with graphene and MXene nano-reinforcements targeted for flexible electronics and advanced high-strength structural applications with additional functions, such as real-time monitoring of structural integrity. Geometrical models of three-dimensional representative volume elements of various configurations were generated, and a computational model based on the micromechanical finite element method was developed and solved using an explicit dynamic solver. The influence of the geometrical orientation, aspect ratio, and volume fractions of the inclusions, as well as the interface properties between the nano-reinforcements and the matrix on the mechanical behavior, was determined. The results of the presented research give initial insights about the mechanical and damage behavior of the proposed composites and provide insight for future design iterations of similar multifunctional materials.
机译:本文呈现与石墨烯和有针对性的柔性电子并用额外的功能,例如实时监控的结构完整性先进的高强度结构应用MXene纳米增强材料新颖的混合聚合物复合材料的机械性能和损伤行为计算分析。产生各种配置的三维代表体积元素的几何模型,并且基于微机械有限元法的计算模型的开发和使用一个明确的动态解算器来解决。几何取向,纵横比,并且夹杂物的体积分数的影响,以及所述纳米增强材料和在机械行为基质之间的界面特性,进行了测定。所提出的研究结果提供了有关建议复合材料的力学和破坏行为的初步见解和类似的多功能材料的未来设计迭代提供洞察力。

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