DocumentCode :
60926
Title :
Atomistic Molecular Dynamics Study of Structural and Thermomechanical Properties of Zdol Lubricants on Hydrogenated Diamond-Like Carbon
Author :
Sorkin, V. ; Sha, Z.D. ; Branicio, P.S. ; Pei, Q.X. ; Zhang, Y.W.
Author_Institution :
Eng. Mech., Inst. of High Performance Comput., Singapore, Singapore
Volume :
49
Issue :
10
fYear :
2013
fDate :
Oct. 2013
Firstpage :
5227
Lastpage :
5235
Abstract :
Using atomistic (all-atom) molecular dynamics simulations with COMPASS force-field, we study the structural and thermomechanical properties of Zdol lubricants accommodated on a hydrogenated diamond-like carbon substrate. It is found that the lubricant molecules form a distinct layered structure near the substrate surface. The thickness of each layer and the location of each density maximum depend on temperature. The computed radius of gyration shows a strong anisotropy near the substrate surface and both parallel and perpendicular components of the radius of gyration increase with increasing temperature. In addition, it is found that the lubricant diffusion coefficient is also anisotropic with the component parallel to the surface being larger than the perpendicular one, and both increase with the lubricant film thickness. Using the calculated diffusion coefficients, we extract the activation energies for lubricant diffusion. We also qualitatively compare the present all-atom simulations with the previous coarse-grained simulations.
Keywords :
diamond-like carbon; hydrogen; lubricants; lubrication; molecular dynamics method; polymers; surface diffusion; surface structure; C:H; COMPASS force-field; Zdol lubricants; activation energies; atomistic molecular dynamics simulations; density maximum location; gyration radius; hydrogenated diamond-like carbon substrate; layer thickness; layered structure; lubricant diffusion coefficient; lubricant film thickness; lubricant molecules; parallel components; perpendicular components; structural properties; thermomechanical properties; All-atom MD; COMPASS; DLCH; Zdol; lubricants;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2262946
Filename :
6516057
Link To Document :
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