Lubricant-Induced Spacing Increases at Slider–Disk Interfaces in Disk Drives
暂无分享,去创建一个
Bruno Marchon | Aravind N. Murthy | C. Mathew Mate | Sang Hoon Kim | C. M. Mate | B. Marchon | A. N. Murthy | Sang-Hoon Kim
[1] Modeling and Simulation of the Interaction between 3-D Lubricant Droplets on the Slider Surface and Air Flow within the Head/Disk Interface of Disk Drives , 2006, INTERMAG 2006 - IEEE International Magnetics Conference.
[2] M. Kurita,et al. Verification of thermally induced nanometer actuation of the magnetic recording transducer to overcome mechanical and magnetic spacing challenges , 2005, INTERMAG Asia 2005. Digests of the IEEE International Magnetics Conference, 2005..
[3] Bruno Marchon,et al. Complex terraced spreading of perfluoropolyalkylether films on carbon surfaces , 1999 .
[4] Lin Wu. A two–dimensional model for the interaction between lubricant droplet on the slider surface and air flow within the head/disk interface of disk drives , 2006 .
[5] Roger Wood,et al. The feasibility of magnetic recording at 1 Terabit per square inch , 2000 .
[6] J. Gui. Tribology challenges for head-disk interface toward 1 Tb/in/sup 2/ , 2003 .
[7] E. JohnsonK.,et al. Thin-film mediacurrent and future technology , 1996 .
[8] R. Kroeker,et al. Lubricant dynamics on a slider: "The waterfall effect" , 2009 .
[9] B. Knigge,et al. Will the numbers add up for sub-7-nm magnetic spacings? Future metrology issues for disk drive lubricants, overcoats, and topographies , 2005, IEEE Transactions on Magnetics.
[10] C. Mate. Wind-induced roughening of thin liquid films , 2004 .
[11] M. Kurita,et al. Drive Integration of Active Flying-Height Control Slider With Micro Thermal Actuator , 2006, IEEE Transactions on Magnetics.
[12] Maté,et al. Shear response of molecularly thin liquid films to an applied air stress , 2000, Physical review letters.
[13] Lin Wu. A model for liquid transfer between two approaching gas bearing surfaces through coupled evaporation-condensation and migration dynamics , 2008 .
[14] M. Scarpulla,et al. Air shear driven flow of thin perfluoropolyether polymer films , 2003 .
[15] C. Mathew Mate,et al. BOOK REVIEW: Tribology on the Small Scale: A Bottom Up Approach to Friction, Lubrication, and Wear , 2008 .
[16] K. Ono,et al. Nanoscale origins of dynamic friction in an asymmetric contact geometry. , 2006, Physical review letters.
[17] S. Perry,et al. HOW DISJOINING PRESSURE DRIVES THE DEWETTING OF A POLYMER FILM ON A SILICON SURFACE , 1999 .
[18] G. W. Tyndall,et al. Autophobic Dewetting of Perfluoropolyether Films on Amorphous-Nitrogenated Carbon Surfaces , 2002 .
[19] D. Bogy,et al. Air-Bearing Shear Force in the Head–Disk Interface of Hard Disk , 2009 .
[20] R. Pit,et al. A model for lubricant flow from disk to slider , 2003, Digest of INTERMAG 2003. International Magnetics Conference (Cat. No.03CH37401).
[21] Richard L. White,et al. Thin-film media - Current and future technology , 1996, IBM J. Res. Dev..