Smear and Decomposition Mechanism of Magnetic Disk PFPE Lubricant Film by Laser Heating in Air and Helium Conditions
Author:
Affiliation:
1. Graduate School of Kansai University
2. Department of Mechanical Engineering, Kansai University
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/15/3/15_186/_pdf
Reference9 articles.
1. [1] Wu, A. Q., Kubota, Y., Klemmer, T., Rausch, T., Peng, C., Peng, Y., Karns, D., Zhu, X., Ding, Y., Chang, E. K. C., Zhao, Y., Zhou, H., Gao, K., Thiele, J.-U., Seigler, M., Ju, G. and Gage, E., “HAMR Areal Density Demonstration of 1+ Tbpsi on Spinstand,” IEEE Transactions on Magnetics, 49, 2, 2013, 779.
2. [2] Tani, H., Shibahara, Y., Lu, R., Koganezawa, S. and Tagawa, N., “TOF-SIMS Analysis of Accumulated PFPE Lubricant Smear Following Laser Heating,” Information Storage and Processing Systems, ISPS-MIPE2018-8515, 2018, V001T01A001.
3. [3] Li, L., Jones, P. M. and Hsia, Y.-T., “Effect of Chemical Structure and Molecular Weight on High-Temperature Stability of Some Fomblin Z-Type Lubricants,” Tribology Letters, 16, 1–2, 2004, 21–27.
4. [4] Waltman, R., Wiita, C., Deng, H., Suthar, T. and Joseph, J., “PFPE Lubricant Molecular Weight Effects on Slider-Disk Interactions,” Tribology Online, 9, 4, 2014, 184–192.
5. [5] Xiong, S., Smith, R., Wang, N., Li, D., Schreck, E., Canchi, S. and Dai, Q., “Transient Thermal Response of the Media by Free Space Laser Heating in Heat Assisted Magnetic Recording,” Information Storage and Processing Systems, ISPS2016-9528, 2016, V001T01A006.
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