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Analysis of the Influence of the Ramp and Disk Dynamics on the HDI Response of 2.5-in Hard Disk Drive to a Shock

Authors
Lim, GeonyupPark, Kyoung-SuPark, No-CheolPark, Young-Pil
Issue Date
Mar-2017
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Air bearing pressure; disk curvature; fluid-structure coupling; ramp-disk contact; slider dynamic analysis; transient shock analysis
Citation
IEEE TRANSACTIONS ON MAGNETICS, v.53, no.3
Journal Title
IEEE TRANSACTIONS ON MAGNETICS
Volume
53
Number
3
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/6360
DOI
10.1109/TMAG.2016.2620182
ISSN
0018-9464
Abstract
Operational shock (op-shock) analysis has been developed to consider the dynamics of components of a hard disk drive (HDD). Op-shock simulation uses simplified models. However, the dynamics of the components affect the head-disk interface (HDI) response, especially the disk curvature and ramp-disk contact. This paper investigated the effect of the dynamics of HDD components on the HDI response. As the HDD is more sensitive to external shock and vibration, the effects of the dynamics of HDD components need to be considered for accurate op-shock analysis. The ramp-disk contact is an important factor in an op-shock simulation, because ramp-disk contact and disk deformation occur during the shock. Therefore, this op-shock simulation modeled the ramp-disk contact and considered the disk curvature. To obtain an accurate result, a two-way coupled method was used to investigate the HDD dynamic response during op-shock. Using the op-shock model, the fluid-structure coupling effect was investigated and compared with a decoupled model that used linear springs to replace the air bearing. Then, we investigated the effect of the ramp-disk contact and disk curvature on the HDI response during a shock.
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Park, Kyoung Su
Engineering (기계·스마트·산업공학부(기계공학전공))
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