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Published in: Tribology Letters 3/2012

01-09-2012 | Original Paper

Air Entrapment in Nanometer-Thick Lubricant Films and its Effect on Slider Flying Height in a Hard Disk Drive

Authors: B. Marchon, X. C. Guo, S. Canchi, R. H. Wang, N. Supper, J. Burns, S. Deoras, J. Zhang, A. Yang, N. Bach, Y. Saito

Published in: Tribology Letters | Issue 3/2012

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Abstract

Experimental data are presented, showing that the flying height of a slider in a hard disk drive can be altered by the chemical nature of the molecularly-thin lubricant film on the disk surface. It is suggested that this effect is likely due to entrapment of the air molecules, both nitrogen and oxygen, within the lubricant film, which results in pressurization loss within the air bearing gap, and lower slider flying height. For the two advanced multidentate lubricants reported in this study, the amount of flying height change is almost insignificant for one of them, but amount to about 0.7 nm, i.e. a significant fraction of the magnetic spacing budget for the other. Bulk air solubility data suggest that the magnitude of this effect is diminished for lubricant molecules with a lower density of backbone ether linkages.

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Metadata
Title
Air Entrapment in Nanometer-Thick Lubricant Films and its Effect on Slider Flying Height in a Hard Disk Drive
Authors
B. Marchon
X. C. Guo
S. Canchi
R. H. Wang
N. Supper
J. Burns
S. Deoras
J. Zhang
A. Yang
N. Bach
Y. Saito
Publication date
01-09-2012
Publisher
Springer US
Published in
Tribology Letters / Issue 3/2012
Print ISSN: 1023-8883
Electronic ISSN: 1573-2711
DOI
https://doi.org/10.1007/s11249-012-9992-x

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