Title of article
Phonon thermal conductivity of a nanowire with amorphous structure
Author/Authors
See، نويسنده , , Tian Long and Feng، نويسنده , , Rui Xing and Lee، نويسنده , , Cheuk Yu and Stachurski، نويسنده , , Z.H.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
6
From page
152
To page
157
Abstract
Thermal conductivity of a model nanowire, composed of Zr–Ti–Cu–Ni–Be amorphous alloy, has been studied by computer simulations and theoretical calculations. The results from the molecular dynamics simulations are compared to predictions from Fourier continuum mechanics theory, and with published experimental data. Analysis of the theoretical phonon thermal conductivity follows the previously published incoherent particle model. The novelty of this study is in the employment of amorphous structure, lacking any order or superlattice. The simulated thermal conductivity is significantly lower than that measured by experiments on bulk alloy. It appears that amorphous structure and side-wall scattering reduce thermal diffusivity significantly. Velocity auto correlation time constant increases during heating cycle in proportion to the ratio of atomic weight divided by atomic scattering cross-sectional area.
Keywords
Amorphous nanowire , Molecular dynamics , thermal diffusivity
Journal title
Computational Materials Science
Serial Year
2012
Journal title
Computational Materials Science
Record number
1689681
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