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Dynamics of a Hard Disk Drive Spindle System Due to Its Structural Design Variables and the Design Variables of Fluid Dynamic Bearings

Authors
Park, Kyoung-YunJang, Gun Hee
Issue Date
Nov-2009
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Coupled journal and thrust bearing; dynamic coefficients; finite element method; fluid dynamic bearings; mode superposition method
Citation
IEEE TRANSACTIONS ON MAGNETICS, v.45, no.11, pp.5135 - 5140
Indexed
SCIE
SCOPUS
Journal Title
IEEE TRANSACTIONS ON MAGNETICS
Volume
45
Number
11
Start Page
5135
End Page
5140
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/175938
DOI
10.1109/TMAG.2009.2029640
ISSN
0018-9464
Abstract
This research investigates the effect of the groove depth, a design variable of fluid dynamic bearings (FDBs), and the shaft diameter, a structural design variable of a hard disk drive (HDD) on the dynamics of a HDD spindle system. The flying height of the HDD spindle system is determined by using the static analysis of the FDBs. The stiffness and damping coefficients are calculated by using the dynamic analysis of the FDBs. The free vibration characteristics and shock response of the HDD spindle system are analyzed by using the finite element method and the mode superposition method. An experimental modal test is also performed to verify the accuracy of the proposed method. This research shows that the shaft diameter changes the rocking frequencies in wider range than the groove depth of FDBs and that the shock response of a HDD spindle system is affected by the groove depth of FDBs. It also shows that the stiffness coefficients of journal bearing affect the rocking frequencies because their magnitudes are within the range of the stiffness of the supporting structure and that the damping coefficients of thrust bearing affect the axial frequency because the stiffness of thrust bearing is much smaller than that of the supporting structure.
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COLLEGE OF ENGINEERING (SCHOOL OF MECHANICAL ENGINEERING)
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