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Erschienen in: Microsystem Technologies 5-7/2011

01.06.2011 | Technical Paper

Robust design of a HDD spindle system supported by fluid dynamic bearings utilizing the stability analysis of five degrees of freedom of a general rotor-bearing system

verfasst von: Myunggyu Kim, Gunhee Jang, Jihoon Lee

Erschienen in: Microsystem Technologies | Ausgabe 5-7/2011

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Abstract

This paper proposes a method to improve the robustness of a hard disk drive (HDD) spindle supported by fluid dynamic bearings (FDBs) by utilizing the stability analysis of the five degrees of freedom of a general rotor-bearing system. The Reynolds equations and the perturbed equations of the coupled journal and thrust bearings were solved by FEM to calculate the dynamic coefficients. The paper introduces the radius of gyration to the equations of motion in order to consistently define the stability problem with respect to a single variable, i.e., the mass. The critical mass, which is the threshold between the stability and instability of the HDD spindle, is determined by solving the linear equations of motion. The proposed method was applied to improve the robustness of a HDD spindle supported by FDBs by varying the groove parameters. It shows that the optimized groove design obtained using the proposed method increases both the stability and the modal damping ratio of the half-speed whirl mode. This research also determines the motions of the rotating disk-spindle system by solving its nonlinear equations of motion with the Runge–Kutta method. It shows that the groove design optimized using the proposed method has a small whirl radius in the steady state. It also shows that it has very little displacement due to the shock excitation, and that it quickly recovers to the equilibrium state.

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Literatur
Zurück zum Zitat Heo BH, Shen IY (2005) A parametric study on rocking vibration of hard disk drive spindle motors with fluid-dynamic bearings and rotating-shaft design. Microsyst Technol 11:1204–1213CrossRef Heo BH, Shen IY (2005) A parametric study on rocking vibration of hard disk drive spindle motors with fluid-dynamic bearings and rotating-shaft design. Microsyst Technol 11:1204–1213CrossRef
Zurück zum Zitat Hirayama T, Sakurai T (2005) Analysis of dynamic characteristics of spiral-grooved journal bearing with considering cavitation occurrence. JSME Int J Ser C 48:261–268CrossRef Hirayama T, Sakurai T (2005) Analysis of dynamic characteristics of spiral-grooved journal bearing with considering cavitation occurrence. JSME Int J Ser C 48:261–268CrossRef
Zurück zum Zitat Hwang T, Ono K (2003) Analysis and design of hydrodynamic journal air bearings for high performance HDD spindle. Microsyst Technol 9:386–394CrossRef Hwang T, Ono K (2003) Analysis and design of hydrodynamic journal air bearings for high performance HDD spindle. Microsyst Technol 9:386–394CrossRef
Zurück zum Zitat Jang GH, Lee SH (2006) Determination of the dynamic coefficients of the coupled journal and thrust bearings by the perturbation method. Tribol Lett 22:239–246CrossRef Jang GH, Lee SH (2006) Determination of the dynamic coefficients of the coupled journal and thrust bearings by the perturbation method. Tribol Lett 22:239–246CrossRef
Zurück zum Zitat Jang GH, Lee SH, Kim HW (2006) Finite element analysis of the coupled journal and thrust bearing in a computer hard disk drive. J Tribol 128:335–340CrossRef Jang GH, Lee SH, Kim HW (2006) Finite element analysis of the coupled journal and thrust bearing in a computer hard disk drive. J Tribol 128:335–340CrossRef
Zurück zum Zitat Jang GH, Seo CH, Lee HS (2007a) Finite element modal analysis of an HDD considering the flexibility of spinning disk-spindle, head-suspension-actuator and supporting structure. Microsyst Technol 13:837–847CrossRef Jang GH, Seo CH, Lee HS (2007a) Finite element modal analysis of an HDD considering the flexibility of spinning disk-spindle, head-suspension-actuator and supporting structure. Microsyst Technol 13:837–847CrossRef
Zurück zum Zitat Jang GH, Lee SH, Kim HW (2007b) Dynamic coefficients of the coupled journal and thrust bearings considering five degrees of freedom for a general rotor-bearing system. In: Proceedings of the STLE/ASME International Joint Tribology Conference, San Diego, California, USA, October; IJTC 2007-44223 Jang GH, Lee SH, Kim HW (2007b) Dynamic coefficients of the coupled journal and thrust bearings considering five degrees of freedom for a general rotor-bearing system. In: Proceedings of the STLE/ASME International Joint Tribology Conference, San Diego, California, USA, October; IJTC 2007-44223
Zurück zum Zitat Kim MG, Jang GH, Kim HW (2010) Stability analysis of a disk-spindle system supported by coupled journal and thrust bearings considering five degrees of freedom. Tribol Int 43:1479–1490CrossRef Kim MG, Jang GH, Kim HW (2010) Stability analysis of a disk-spindle system supported by coupled journal and thrust bearings considering five degrees of freedom. Tribol Int 43:1479–1490CrossRef
Zurück zum Zitat Ono K, Murashita S, Yamaura H (2005) Stability analysis of a disk-spindle supported by a plain journal bearing and pivot bearing. Microsyst Technol 11:734–740CrossRef Ono K, Murashita S, Yamaura H (2005) Stability analysis of a disk-spindle supported by a plain journal bearing and pivot bearing. Microsyst Technol 11:734–740CrossRef
Zurück zum Zitat Park JS, Shen IY, Roger Ku CP (2002) A parametric study on rocking vibration of rotating disk/spindle systems with hydrodynamic bearings: rotating-shaft design. Microsyst Technol 8:427–434CrossRef Park JS, Shen IY, Roger Ku CP (2002) A parametric study on rocking vibration of rotating disk/spindle systems with hydrodynamic bearings: rotating-shaft design. Microsyst Technol 8:427–434CrossRef
Zurück zum Zitat Yoon JK, Shen IY (2005) A numerical study on rotating-shaft spindles with nonlinear fluid-dynamic bearings. IEEE Trans Magn 41:756–762CrossRef Yoon JK, Shen IY (2005) A numerical study on rotating-shaft spindles with nonlinear fluid-dynamic bearings. IEEE Trans Magn 41:756–762CrossRef
Metadaten
Titel
Robust design of a HDD spindle system supported by fluid dynamic bearings utilizing the stability analysis of five degrees of freedom of a general rotor-bearing system
verfasst von
Myunggyu Kim
Gunhee Jang
Jihoon Lee
Publikationsdatum
01.06.2011
Verlag
Springer-Verlag
Erschienen in
Microsystem Technologies / Ausgabe 5-7/2011
Print ISSN: 0946-7076
Elektronische ISSN: 1432-1858
DOI
https://doi.org/10.1007/s00542-010-1189-3

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