对甲苯机械性能的全面研究:温度、分层、取向和缺陷的影响

IF 2.7 Q2 PHYSICS, CONDENSED MATTER Micro and Nanostructures Pub Date : 2024-11-12 DOI:10.1016/j.micrna.2024.208020
Wenting Yang , Li-Cai Zhao
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引用次数: 0

摘要

本研究通过分子动力学(MD)模拟探讨了单层和多层甲苯纳米片的力学性能。研究分析了尺寸、温度和缺陷等关键参数对单层托拉烯纳米片的扶手和之字形构型的力学行为的影响。根据应力-应变曲线评估了关键力学性能,包括杨氏模量、极限应力、断裂应力和断裂应变。结果表明,与扶手结构相比,人字形结构具有更高的杨氏模量。然而,"之 "字形结构比 "之 "字形结构显示出更大的极限应力。温度升高或引入空位缺陷会导致两种构型的机械性能下降。杨氏模量对温度的敏感性在人字形结构中比在扶手椅结构中更为明显,尽管扶手椅结构的杨氏模量通常更高。此外,增加纳米片的层数也会提高杨氏模量,而扶手椅构型比之字形构型的改善更为显著。人字形结构的杨氏模量随层数增加而变化很小。
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Comprehensive study of Tolanene's mechanical properties: Effects of temperature, layering, orientation, and defects
This study explores the mechanical properties of both single-layered and multi-layered tolanene nanosheets via molecular dynamics (MD) simulations. The effects of critical parameters such as size, temperature, and defects on the mechanical behavior of armchair and zigzag configurations of single-layer Tolanene nanosheets are analyzed. Key mechanical properties, including Young's modulus, ultimate stress, fracture stress, and fracture strain, are evaluated based on the stress-strain curve. It is observed that the zigzag configuration exhibits a higher Young's modulus compared to the armchair configuration. However, the armchair structure shows greater ultimate stress than the zigzag configuration. An increase in temperature or the introduction of vacancy defects leads to a degradation of mechanical properties in both configurations. The sensitivity of Young's modulus to temperature is more pronounced in the zigzag configuration than in the armchair, even though the armchair configuration generally has a higher Young's modulus. Additionally, increasing the number of layers in the nanosheets results in an enhancement of Young's modulus, with the armchair configuration showing more significant improvement than the zigzag configuration. The variation in Young's modulus with increasing layers is minimal for the zigzag configuration.
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CiteScore
6.50
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