IIP情報・知能・精密機器部門講演会講演論文集
Online ISSN : 2424-3140
セッションID: A-3-1
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境界面の温度と適応係数を考慮した分子気体潤滑(t-MGL)理論の構築
―自由分子流領域に着目したスライダ浮上基本特性―
岡村 祐輝松岡 広成福井 茂寿
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As new magnetic recording techniques, thermal fly-height control (TFC) and heat-assisted magnetic recording (HAMR) have been investigated in order to increase the recording density of hard disk drives (HDDs). When the spacing is less than about 10 nm, the flow in the lubrication region is close to the free molecular flow, since spacing h is less than mean free path λ of the gas. In this paper, we derived the free molecular t-MGL equation considering temperature distributions and accommodation coefficients at the boundary, for examining thermo-molecular gas-film lubrication (t-MGL) characteristics in several nanometers. Moreover, we show numerically the effects of accommodation coefficients on the basic characteristics of pressures and shear stresses in free molecular region.

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