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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Nanoindentation and scratch resistance testing on magnetic tape heads coated with ultra-thin amorphous carbon layers
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Nanoindentation and scratch resistance testing on magnetic tape heads coated with ultra-thin amorphous carbon layers

机译:涂有超薄非晶碳层的磁带磁头的纳米压痕和耐划伤性测试

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摘要

We present results on nanoindentation and scratch testing on magnetic recording tape heads coated with sub-20 nm amorphous carbon layers, prepared by filtered cathodic deposition and plasma enhanced chemical vapour deposition. The hardness values of the coated devices are higher than that of the sputtered Al{sub}2O{sub}3 substrate. The coatings do not reduce friction but improve the scratch resistance of the tape heads. Hardness, which shows some correlation with scratch resistance is a contributing factor, especially at high load where it reduces plastic ploughing of the substrate. For low scratching load, the wear seems to be influenced by the adhesive properties of the film/substrate interface. Smoother surfaces and smaller tip radius should improve the accuracy of the results. This could provide better insight into the failure mechanism of these ultra-thin overcoats.
机译:我们介绍了纳米压痕和划痕测试的结果,这些磁头用涂有20纳米以下非晶碳层的磁记录带头制成,通过过滤的阴极沉积和等离子体增强的化学气相沉积制备。涂覆的装置的硬度值高于溅射的Al {sub} 2O {sub} 3衬底的硬度值。涂层不会减少摩擦,但会提高磁带头的耐刮擦性。硬度与耐刮擦性之间存在一定的相关性,这是一个重要因素,尤其是在高负荷下,它可以减少基材的塑性耕作。对于低的刮擦负荷,磨损似乎受薄膜/基材界面的粘合性能影响。光滑的表面和较小的尖端半径应提高结果的准确性。这样可以更好地了解这些超薄外涂层的失效机理。

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