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the tribology of advanced digital recording (ADR) systems

机译:高级数字记录(ADR)系统的摩擦学

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摘要

The advanced digital recording system, a linear tape recording system is examined with respect to the tribology involved at the head/tape interface. Using atomic force microscopy (AFM), Auger electron spectrocopy (AES) and scanning Auger microscopy (SAM) surface characterisation techniques, several wear mechanisms are isolated: scratching, attributed to the polishing action of the tape asperities; microfracture then pullout of the Al{sub}2O{sub}3-TiC ceramic used as tape bearing surface; and ploughing due to three-body action of ceramic pullouts entrapped on the recessed poles. A ceramic differential wear is found to occur at the expense of the Al{sub}2O{sub}3 component, which therefore forms the ceramic recessed regions. The ceramic pullouts involved in the poles' three-body abrasion, however, appear to consist of TiC particles. A model for the ceramic wear mechanism is proposed. A transferred mixture of possibly magnetic pigments, binder and lubricant from the tape to the head is observed in the form of adhesive deposits. The iron component of this transfer is found in higher concentrations on the pole tips and the prominent part of the ceramic.
机译:相对于磁头/磁带接口所涉及的摩擦学,对高级数字记录系统,线性磁带记录系统进行了检查。使用原子力显微镜(AFM),俄歇电子能谱(AES)和扫描俄歇显微镜(SAM)表面表征技术,可以分离出几种磨损机理:刮擦,归因于胶带粗糙的抛光作用;微断裂,然后拔出用作带轴承表面的Al {sub} 2O {sub} 3-TiC陶瓷;并由于陷在杆上的陶瓷拉出物的三体作用而进行耕作。发现以Al {sub} 2O {sub} 3成分为代价发生陶瓷差异磨损,因此形成陶瓷凹入区域。但是,磁极三体磨损涉及的陶瓷拉出物似乎由TiC颗粒组成。提出了陶瓷磨损机理的模型。观察到可能的磁性颜料,粘合剂和润滑剂的混合物以胶带沉积物的形式从胶带转移至磁头。在磁极尖端和陶瓷突出部分发现了这种转移的铁成分。

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