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The Influence of Aluminum Oxide Particles in Magnetic Coating on Head/Disk Wear

 

作者: Toshiro Kita,  

 

期刊: Tribology Transactions  (Taylor Available online 1991)
卷期: Volume 34, issue 1  

页码: 107-111

 

ISSN:1040-2004

 

年代: 1991

 

DOI:10.1080/10402009108982016

 

出版商: Taylor & Francis Group

 

数据来源: Taylor

 

摘要:

The particulate magnetic disks commonly used in magnetic disk storage systems contain aluminum-oxide (Al2O3) particles to reinforce the strength of their magnetic coating. In this paper, the influence of these particles on the tribological characteristics of particulate disks is investigated using two types of ferrite materials for flying heads and particulate disks with four different levels of Al2O3content. As the Al2O3content increases, the wear mode changes from the adhesive wear to the abrasive wear. Owing to this transition, the head wear becomes increasingly severe while the durability of the particulate disk improves. Regarding the differences between ferrite materials, relatively soft Mn-Zn ferrite shows worse wear results than hard Ni-Zn ferrite. In particular, it is found that Mn-Zn fertile is worn even by the γ-Fe2O3particles of the particulate disks. In the combination of ferrite materials and particulate disks used here, an Al2O3content of around 8 percent is optimum to avoid headcrash, which is one of the most serious problems in magnetic disk storage systems.

 

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