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-13
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分子動力学法によるナノ厚さ液体潤滑膜のせん断特性の温度依存性解析
*小林 敬之張 賀東福澤 健二伊藤 伸太郎
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To design head disk interface of hard disk drives (HDDs) using heat assisted magnetic recording, it is important to reveal temperature effects on shear properties of nanometer-thick liquid lubricant films. For this purpose, we conducted molecular dynamics simulations of a liquid film of perfluoropolyether which is subjected to confined shear between two carbon plates under conditions of different temperatures and shear speeds. The results of the simulations indicate that the rate of change of shear viscosity with temperature becomes smaller with increasing shear rate and the temperature dependence of shear viscosity is almost negligible under the condition of high shear rates which are typical for HDDs.
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