Mechanical Properties and Buckling of Kagome Graphene under Tension: A Molecular Dynamics Study

被引:4
|
作者
Wavrunek, Trevor [1 ]
Peng, Qing [2 ,3 ,4 ]
Abu-Zahra, Nidal [1 ]
机构
[1] Univ Wisconsin Milwaukee, Mat Sci & Engn Dept, Milwaukee, WI 53211 USA
[2] King Fahd Univ Petr & Minerals, Phys Dept, Dhahran 31261, Saudi Arabia
[3] King Fahd Univ Petr & Minerals, Hydrogen & Energy Storage Ctr, Dhahran 31261, Saudi Arabia
[4] KACARE Energy Res & Innovat Ctr Dhahran, Dhahran 31261, Saudi Arabia
关键词
molecular dynamics simulation; Kagome graphene; wrinkling; Griffith brittle fracture; mechanical properties; SHEET;
D O I
10.3390/cryst12020292
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
Kagome graphene is a carbon allotrope similar to graphene, with a single-atom thickness and a co-planar atomic structure. Despite interesting electronic properties, its mechanical behavior is still elusive. We have investigated the tensile properties of Kagome graphene under various strain rates and finite temperatures using molecular dynamics simulations. The Young's modulus, ultimate tensile strength, fracture strain, and fracture toughness of the unsupported bulk material were measured as 96 GPa, 43 GPa, 0.05, and 1.9 J m(-3), respectively, at room temperature and a strain rate of 10(9) s(-1). Two deformation-stages were observed under tensile loading: normal and wrinkled. Initially, the Kagome graphene system stays in a co-planar structure without wrinkling until the tensile strain reaches 0.04, where it starts to wrinkle, unlike graphene. The wrinkle wavelength and magnitude suggest a very low bending rigidity, and wrinkle formation does not follow a rate predicted by continuum mechanics. Furthermore, the fracture mechanism of wrinkled Kagome graphene is briefly discussed.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] A molecular dynamics study on thermal and mechanical properties of graphene-paraffin nanocomposites
    Wang, Yu
    Yang, Chunhui
    Cheng, Yuan
    Zhang, Yingyan
    RSC ADVANCES, 2015, 5 (101): : 82638 - 82644
  • [32] Study on the Mechanical Properties of Functional Graphene/Polyethylene Composites by Molecular Dynamics Simulation
    Qin, Yuanyuan
    Wang, Yifei
    Liu, Jin
    Chen, Fengfeng
    Yao, Aiying
    Chen, Zhanchun
    Fu Junyu
    MACROMOLECULAR RESEARCH, 2022, 30 (12) : 863 - 870
  • [33] Molecular dynamics study on the thermal conductivity and mechanical properties of boron doped graphene
    Mortazavi, Bohayra
    Ahzi, Said
    SOLID STATE COMMUNICATIONS, 2012, 152 (15) : 1503 - 1507
  • [34] Mechanical properties of graphene under molecular hydrogen physisorption: An ab initio study
    Mirnezhad, M.
    Ansari, R.
    Seifi, M.
    Rouhi, H.
    Faghihnasiri, M.
    SOLID STATE COMMUNICATIONS, 2012, 152 (10) : 842 - 845
  • [35] Elastic properties and mechanical tension of graphene
    Ramirez, R.
    Herrero, C. P.
    PHYSICAL REVIEW B, 2017, 95 (04)
  • [36] Mechanical properties of β-Si3N4 thin layers in basal plane under tension: A molecular dynamics study
    Lu, Xuefeng
    Chen, Meng
    Fan, Lei
    Wang, Chao
    Wang, Hongjie
    Qiao, Guanjun
    APPLIED PHYSICS LETTERS, 2013, 102 (03)
  • [37] Microstructural evolution and mechanical properties of AlxCoCrFeNi high-entropy alloys under uniaxial tension: A molecular dynamics simulations study
    Jiang, Jun
    Chen, Pengwan
    Qiu, Jiali
    Sun, Weifu
    Saikov, Ivan
    Shcherbakov, Vladimir
    Alymov, Mikhail
    MATERIALS TODAY COMMUNICATIONS, 2021, 28
  • [38] Mechanical properties of Au nanowires under uniaxial tension with high strain-rate by molecular dynamics
    Chen, DL
    Chen, TC
    NANOTECHNOLOGY, 2005, 16 (12) : 2972 - 2981
  • [39] Tensile mechanical properties of c-BN thin layers under tension: A molecular dynamics simulation
    Wei, Yin
    Wang, Hongjie
    Lu, Xuefeng
    Fan, Xingyu
    Wei, Heng
    COMPUTATIONAL MATERIALS SCIENCE, 2017, 131 : 315 - 320
  • [40] Mechanical properties of graphene-like BC3; a molecular dynamics study
    Zahedi, Reza Khademi
    Shirazi, A. H. N.
    Alimouri, Pouyan
    Alajlan, Naif
    Rabczuk, Timon
    COMPUTATIONAL MATERIALS SCIENCE, 2019, 168 : 1 - 10