Frictional heating effect on thermal protrusion in head disk interface

被引:0
作者
Jianhua Li
Junguo Xu
Masaru Furukawa
机构
[1] HGST Japan,Japan Research Laboratory
[2] Ltd.,undefined
来源
Microsystem Technologies | 2014年 / 20卷
关键词
Acoustic Emission; Hard Disk Drive; Frictional Heating; Head Disk Interface; Lead Pole;
D O I
暂无
中图分类号
学科分类号
摘要
The frictional heating effect on the clearance loss in the reader and writer elements of hard disk drive was investigated by conducting a coupled simulation between the air bearing dynamics and the head thermal-mechanics using a frictional heating model. The frictional heating power was obtained through experimentation. In this experiment, the frictional heating power was quantified based on the giant magneto-resistance, which varies with the frictional heating, and the frictional heating induced temperature rise was 15 °C. By matching it with the simulated relationship between the temperature rise and frictional heating power, we found that the frictional heating power was about 3 mW. The simulation results at this power indicated when a touchdown (TD) occurs on the wrap-around shield (WAS), the frictional heating can cause a larger additional protrusion on the writer element, which overestimates the reader topography loss to 0.32 nm, and when the TD point is on leading pole (LP), the frictional heating can cause a larger additional protrusion on the reader element, which underestimates the reader topography loss to 0.2 nm. However, the amount of protrusion caused by frictional heating in the reader and writer elements when TD point in on the WAS and LP is almost the same at only a small difference of 0.052 nm. Finally, we analyzed the frictional heating effect on the clearance in the reader and writer elements. The clearance in the pullback state is not equal to the spacing caused by the TFC pullback power, but the sum of the clearance change caused by the TFC pullback power and the clearance change caused by the frictional heating power, and the clearance change in the reader and writer elements caused by frictional heating are different. Therefore, it is very important to account for the frictional heating effect when designing the reader/writer clearance.
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页码:1565 / 1570
页数:5
相关论文
共 26 条
  • [1] Chachi SV(2011)Thermal fly-height control slider instability and dynamics at touchdown: explanations using nonlinear systems theory J Tribol 133 021902-1600
  • [2] Bogy DB(2013)Study on head instability using Flying-QST tester for HDDs Microsyst Technol 19 1595-578
  • [3] Furukawa M(2007)Air-bearing effect on actuated thermal pole-tip protrusion for hard disk drives ASME J Tribol 129 570-375
  • [4] Xu J(2006)Active flying-height control slider using MEMS thermal actuator Microsyst Technol 12 369-1614
  • [5] Kato Y(2013)Thermal mechanics of a contact sensor used in hard disk drives Microsyst Technol 19 1607-3182
  • [6] Wada T(2008)Dynamic instability of flying head slider and stabilizing design for near-contact magnetic recording J Magn Mater 320 3174-42
  • [7] Juang J-Y(2000)The feasibility of magnetic recording at 1 terabit per square inch IEEE Trans Magn 36 36-1375
  • [8] Bogy DB(2007)Dynamic of ultra low flying sliders during contact with a lubricated disk Microsyst Technol 13 1371-undefined
  • [9] Kurita M(undefined)undefined undefined undefined undefined-undefined
  • [10] Shiramatsu T(undefined)undefined undefined undefined undefined-undefined