On the mechanical properties and fracture analysis of polymer nanocomposites reinforced by functionalized silicon carbide nanotubes: A molecular dynamics investigation

被引:11
作者
Eghbalian, M. [1 ]
Ansari, R. [2 ]
Haghighi, S. [1 ]
机构
[1] Univ Guilan, Fac Mech Engn, Univ Campus 2, Rasht, Iran
[2] Univ Guilan, Fac Mech Engn, POB 3756, Rasht, Iran
关键词
Hydrogen-and fluorine-functionalized SiCNT; Mechanical properties; Polymer nanocomposite; Molecular dynamics simulation; COMPOSITES; SIMULATIONS; DIAMETER; BEHAVIOR;
D O I
10.1016/j.jmgm.2021.108086
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The mechanical characteristics of reinforced polymer nanocomposites with Hydrogen (H)- and Fluorine (F)functionalized silicon carbide nanotubes (H-and F-fSiCNTs) are investigated herein using molecular dynamics (MD) simulations. The effects of covalent functionalization and chirality of SiCNT, and diverse polymer materials on Young's modulus, maximum stress, and strain to the failure point, as well as strain energy are studied. The results reveal that by increasing the functionalization degree, the maximum stress, maximum strain, elastic modulus, and strain energy decrease. The tensile strength of polymer nanocomposites containing SiCNT is higher than that of pure polymer and polymers containing functionalized silicon carbide nanotubes (fSiCNTs). It is also found that the incorporation of fSiCNT into the polymer matrix (fSiCNT/polymer) gives rise to a considerable improvement in the ultimate strength of nanocomposites compared to the pure polymer. Polymer nanocomposites reinforced by armchair SiCNTs and fSiCNTs withstand higher maximum stresses and possess less longitudinal Young's modulus as compared to the same systems comprising zigzag nanotubes. In every percent of functionalization, the zigzag F-fSiCNT/polymer tends to have a higher Young's modulus as compared to the zigzag H-fSiCNT/polymer. Similarly, the armchair F-fSiCNTs incorporated into the polyethylene (PE) matrix (FfSiCNTs/PE) are stiffer than the armchair H-fSiCNTs/PE in each weight of functionalization. Moreover, the armchair fSiCNTs/polymer nanocomposites show higher storage of strain energy in comparison with their zigzag counterparts.
引用
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页数:12
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