Author:
Zhao Liang,Nasution Mahyuddin K. M.,Hekmatifar Maboud,Sabetvand Roozbeh,Kamenskov Pavel,Toghraie Davood,Alizadeh As’ad,Iran Teimour Ghahari
Abstract
AbstractIn the present study, the improvement of mechanical properties of conventional concretes using carbon nanoparticles is investigated. More precisely, carbon nanotubes are added to a pristine concrete matrix, and the mechanical properties of the resulting structure are investigated using the molecular dynamics (MD) method. Some parameters such as the mechanical behavior of the concrete matrix structure, the validation of the computational method, and the mechanical behavior of the concrete matrix structure with carbon nanotube are also examined. Also, physical quantities such as a stress–strain diagram, Poisson's coefficient, Young's modulus, and final strength are calculated and reported for atomic samples under external tension. From a numerical point of view, the quantities of Young's modulus and final strength are converged to 35 GPa and 35.38 MPa after the completion of computer simulations. This indicates the appropriate effect of carbon nanotubes in improving the mechanical behavior of concrete and the efficiency of molecular dynamics method in expressing the mechanical behavior of atomic structures such as concrete, carbon nanotubes and composite structures derived from raw materials is expressed that can be considered in industrial and construction cases.
Publisher
Springer Science and Business Media LLC
Reference39 articles.
1. Madina, B., Gumilyov, L.N. Determination of the most effective location of environmental hardenings in concrete cooling tower under far-source seismic using linear spectral dynamic analysis results. J. Res. Sci. Engi. Technol.. 8(1), 22–24 (2020).
2. Mosavi, A. et al. The molecular dynamics simulation of thermal manner of Ar/Cu nanofluid flow: the effects of spherical barriers size. J. Mol. Liquids 319, 114183 (2020).
3. Toghraie, D., Hekmatifar, M., & Jolfaei, N. A. Investigation of heat transfer and fluid flow behaviors of CuO/(60: 40)% ethylene glycol and water nanofluid through a serpentine milichannel heat exchanger. Int. J. Numer. Methods Heat Fluid Flow (2019).
4. Abu-Hamdeh, N. H., Almatrafi, E., Hekmatifar, M., Toghraie, D., & Golmohammadzadeh, A., Molecular dynamics simulation of the thermal properties of the Cu-water nanofluid on a roughed Platinum surface: Simulation of phase transition in nanofluids. J. Mol. Liquids 114832 (2020)
5. Toghraie, D., Hekmatifar, M., Salehipour, Y. & Afrand, M. Molecular dynamics simulation of Couette and Poiseuille Water-Copper nanofluid flows in rough and smooth nanochannels with different roughness configurations. Chem. Phys. 527, 110505 (2019).
Cited by
8 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献