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: 111
会議情報
111 SPM用プローブによる磁気ディスク表面凝着力の計測 : カンティレバーの過渡振動を用いたナノ潤滑膜の凝着力と伸び量の同定法(情報機器コンピュータメカニクス1 : ヘッド・ディスク・インタフェース)
大島 康司三矢 保永岩瀬 友輔
著者情報
会議録・要旨集 フリー

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抄録
A novel method for identifying the adhesion force and the dynamic elongation of molecularly thin lubricant coated over DLC surface was developed while an SPM tip retracting from contact position by using transient response of the SPM cantilever arising after separation. The accuracy of measurement of the cantilever displacement was considerably improved by mounting a silicon tip with optically reflecting surface on the cantilever to produce high quality image of the interference fringe pattern formed by Michelson interferometry. To describe experimental transient response, a model for separation process was introduced wherein the surface force decreases from an initial value (contact force) to zero in proportion to the tip travel accompanying elongation of the lubricant. Calculated vibration waveforms using this model were found to be in good agreement with observed waveforms. This hinted that PFPE thin film could stretch as much as a hundred times of lubricant thickness.
著者関連情報
© 2001 一般社団法人 日本機械学会
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