Large-scale Molecular Dynamics Simulations of Shock Waves in Laves Crystals and Icosahedral Quasicrystals
نویسنده
چکیده
Quasicrystals and ordinary crystals both possess long-range translational order. But quasicrystals are aperiodic since their symmetry is non-crystallographic. The aim of this project is to study the behavior of shock waves in periodic and aperiodic structures and to compare the results. The expectation is that new types of defects are generated in the aperiodic materials. The materials studied are two models of (AlCu)Li quasicrystals and the C15 Laves phase, a low-order approximant of the quasicrystals. An elastic wave is found in the simulations up to a piston velocity of about up < 0.25 cl. Between 0.5 < up/cl < 0.5 the slope of elastic wave velocity slows down, and a new plastic wave is observed. Extended defect are generated, but no simple two-dimensional walls. The defect bands have finite width and a disordered structure. If the crystal is quenched a polycrystalline phase is obtained. For the quasicrystal the transformation is more complex since ring processes occur in the elastic regime already. Starting at about up < 0.5 cl a single plastic shock wave is observed. In this range all structures are destroyed completely.
منابع مشابه
Imd { a Molecular Dynamics Program
The intention of this article is twofold: First, we want to describe IMD (ITAP Molecular Dynamics), a software package for classical molecular dynamics simulations on massively-parallel computers. The software is a general purpose package which can be used for any kind of condensed matter, but it contains a number of special features for simulation of the mechanical properties of solids, especi...
متن کاملImd { a Molecular Dynamics Program Andapplicationsj
The intention of this article is twofold: First, we want to describe IMD (ITAP Molecular Dynamics), a software package for classical molecular dynamics simulations on massively-parallel computers. The software is a general purpose package which can be used for any kind of condensed matter, but it contains a number of special features for simulation of the mechanical properties of solids, especi...
متن کاملIcosahedral quasicrystals by optical interference holography
Optical interference holography has been proven to be a useful technique in fabricating periodic photonic crystals in which electromagnetic waves are forbidden in certain frequency band gaps. Compared to periodic crystals, quasicrystals, having higher point group symmetry, are more favorable in achieving complete band gaps. In this letter, we propose two seven-beam optical interference configur...
متن کاملLarge-scale molecular dynamics simulations of shock induced plasticity in tantalum single crystals
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compression in Ta single crystals. The atomic interactions are modeled via a recently developed and optimized embedded-atom method (EAM) potential for Ta, which reproduces the equation of state up to 200 GPa. We examined the elastic-plastic transition and shock wave structure for wave propagation along ...
متن کاملComputational self-assembly of a one-component icosahedral quasicrystal.
Icosahedral quasicrystals (IQCs) are a form of matter that is ordered but not periodic in any direction. All reported IQCs are intermetallic compounds and either of face-centred-icosahedral or primitive-icosahedral type, and the positions of their atoms have been resolved from diffraction data. However, unlike axially symmetric quasicrystals, IQCs have not been observed in non-atomic (that is, ...
متن کامل