DocumentCode :
3537139
Title :
Thermal study of nanometer spaced head-disk systems
Author :
Hui Li ; Liu, Bo ; Chong, Tow-Chong
Author_Institution :
Data Storage Inst., Singapore, Singapore
fYear :
2005
fDate :
4-8 April 2005
Firstpage :
1391
Lastpage :
1392
Abstract :
As technology moves towards 2.5-3 nm fly-height, it is important to have a thorough understanding of the thermally induced slider deformation and the heat transfer between head slider and disk media. Up to now, all the slider deformation analysis assumes the heat flux over all slider´s air bearing surface (ABS) as a constant and, therefore, lacks of expected accuracy. An accurate heat flux distribution is important to calculate the thermal protrusion of slider. A model of heat transfer between slider and disk is introduced in this work to study the heat flux and heat transfer in head-disk interface. The heat flux distribution on slider ABS is obtained by solving the Reynolds equation and heat conduction equation in slider with velocity slip and temperature jump boundary conditions. Finite element (FE) method is, then, applied to analyze the temperature rise induced by the writing operation and the corresponding thermal protrusion of slider under various conditions.
Keywords :
deformation; finite element analysis; hard discs; heat conduction; magnetic heads; nanotechnology; 2.5 to 3 nm; Reynolds equation; air bearing surface; disk media; finite element method; head slider; head-disk interface; heat conduction equation; heat flux distribution; heat transfer; nanometer spaced head-disk systems; slider deformation analysis; temperature jump boundary; thermal protrusion; thermally induced slider deformation; velocity slip; Boundary conditions; Drives; Equations; Finite element methods; Heat engines; Heat transfer; Memory; Space technology; Temperature distribution; Thermal engineering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference, 2005. INTERMAG Asia 2005. Digests of the IEEE International
Print_ISBN :
0-7803-9009-1
Type :
conf
DOI :
10.1109/INTMAG.2005.1464125
Filename :
1464125
Link To Document :
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