DocumentCode :
1362378
Title :
Effects of temperature and humidity on stiction behavior of laser zone textured disk
Author :
Tan, A.H. ; Yeh, C.C. ; Lin, J.S. ; Wang, C.M.
Author_Institution :
Trace Storage Tech. Corp., Hsinchu, Taiwan
Volume :
34
Issue :
2
fYear :
1998
fDate :
3/1/1998 12:00:00 AM
Firstpage :
396
Lastpage :
398
Abstract :
This study is to investigate the effects of relative humidity and temperature on contact start stop (CSS) performance. Commercially available 95 mm thin film disks with the diamond like coating were used in this paper. Disks were lubricated with Z-Dol. The coefficient of stiction was used to monitor the interaction between the head and the laser zone texture disk surface during CSS. The experimental data were investigated on the disk surface at 8%, 80% relative humidity and 5°C, 35°C, 60°C, respectively. It was found that the coefficient of stiction was well correlated with the lubricant film thickness and adsorbed water film thickness at the head/disk interface. For the Z-Dol lubricant on mechanical and laser zone texture disk, the coefficient of stiction of head/disk interface at 5°C, 8%RH was less than that of the 35°C, 80%RH. The coefficient of stiction for laser-zone-texture disks was smaller than that of the mechanical-zone-texture disks. From these results it can be seen that the lower coefficient of stiction and the longer lifetime of CSS test was obtained at optimum condition
Keywords :
friction; hard discs; humidity; lubrication; magnetic heads; magnetic thin film devices; 5 to 60 degC; 95 mm; adsorbed water film thickness; contact start stop performance; head interaction; laser zone textured disk; lubricant film thickness; mechanical-zone-texture disks; optimum condition; relative humidity; stiction behavior; thin film disks; Cascading style sheets; Coatings; Humidity; Life testing; Lubricants; Monitoring; Surface emitting lasers; Surface texture; Temperature; Transistors;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.667774
Filename :
667774
Link To Document :
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