Insights into the thermomechanical and interfacial behaviors of polymer-clay nanocomposites via coarse-grained molecular dynamics simulations

POLYMER COMPOSITES(2024)

引用 0|浏览4
暂无评分
摘要
Polymer-clay nanocomposites (PCNs) are commonly applied as multi-functional structural materials with exceptional thermomechanical properties, while maintaining the characteristics of lightweight and optical clarity. In this study, building upon previously developed coarse-grained (CG) models for nanoclay and poly (methyl methacrylate) (PMMA), we employ molecular dynamics (MD) simulations to systematically investigate the thermomechanical properties of PCNs when arranged in stacked configurations. Incorporating stacked clay nanofillers into a polymer matrix, we systematically conduct shear and tensile simulations to investigate the influences of variations in weight percentage, system temperature, and nanoclay size on the thermomechanical properties of PCNs at a fundamental level. The weight percentage of nanoclay in nanocomposites proves to have a significant influence on both the shear and Young's modulus (e.g., the addition of 10 Wt% nanoclay leads to an increase of 32.6% in the Young's modulus), with each exhibiting greater mechanical strength in the in-plane direction compared to the out-of-plane direction, and the disparity between these two directions further widens with an increase in the weight percentage of nanoclay. Furthermore, the increase in the size of nanoclay contributes to an overall modulus enhancement in the composite while the growth reaches a saturation point after a certain threshold of about 10 nm. Our simulation results indicate that the overall dynamics of PMMA are suppressed due to the strong interactions between nanoclay and PMMA, where the confinement effect on local segmental dynamics of PMMA decays from the nanoclay-polymer interface to the polymer matrix. Our findings provide valuable molecular-level insights into microstructural and dynamical features of PCNs under deformation, emphasizing the pivotal role of clay-polymer interface in influencing the thermomechanical properties of the composite materials.Highlights CG modeling is performed to explore the thermomechanical behavior of PCN. Effects of nanoclay weight percentage and size on modulus are studied. Interface leads to nanoconfinement effect on Tg and molecular stiffness. Correlations between molecular stiffness and modulus are identified. Simulations show spatial variation of dynamical heterogeneity. Coarse-grained modeling of mechanical behavior of polymer-clay nanocomposites. image
更多
查看译文
关键词
coarse-grained modeling,mechanical behavior,molecular dynamics,polymer-clay composites,thermodynamic behavior
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要