DocumentCode :
1257007
Title :
Design of Herringbone Groove Disk Damper for Effective Suppression of Axial Vibration of Disk in Hard Disk Drive
Author :
Choi, Moonho ; Rhim, Yoon Chul
Author_Institution :
Center for Inf. Storage Device, Yonsei Univ., Seoul, South Korea
Volume :
47
Issue :
7
fYear :
2011
fDate :
7/1/2011 12:00:00 AM
Firstpage :
1882
Lastpage :
1885
Abstract :
A herringbone groove pattern is applied to a plane disk damper of a hard disk drive to reduce the axial vibration of the disk rotating at high speed. According to the design parameters such as mean radius rm, ridge-groove ratio B, and spiral angle β , the performance of the herringbone groove disk damper is studied numerically in terms of the stiffness and the damping coefficients and the ratio of the axial stiffness to the frictional torque. The dynamic coefficients are calculated from the result of computational fluid dynamics solution of a simple hard disk drive model using four-point central difference scheme. To confirm the numerical results, the nonrepeatable run-out of the disk is measured when a plane or a herringbone groove disk damper is used. It is found that a herringbone groove disk damper increases the stiffness as well as the damping coefficient of the air film by 20% more than those of a plane disk damper.
Keywords :
computational fluid dynamics; disc drives; elasticity; hard discs; numerical analysis; shock absorbers; vibrations; air film; axial vibration; computational fluid dynamics solution; damping coefficients; four-point central difference scheme; frictional torque; hard disk drive; herringbone groove disk damper design; plane disk damper; Damping; Hard disks; Mathematical model; Shock absorbers; Spirals; Torque; Vibrations; Computational fluid dynamics; disk damper; dynamic coefficient; hard disk drive; herringbone groove;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2011.2147283
Filename :
5929009
Link To Document :
بازگشت