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首页> 外文期刊>Tribology letters >Friction and Wear Properties of Graphite-Like Carbon Films Deposited on Different Substrates with a Different Interlayer Under High Hertzian Contact Stress
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Friction and Wear Properties of Graphite-Like Carbon Films Deposited on Different Substrates with a Different Interlayer Under High Hertzian Contact Stress

机译:高赫兹接触应力下沉积在具有不同夹层的不同基底上的类石墨碳膜的摩擦磨损特性

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Four types of graphite-like carbon (GLC) films were deposited on different substrates (Ti6Al4V, WC-27CrNi) with a different interlayer (TiC/Ti, TiC/Ti/TiN) using an unbalanced magnetron sputtering system. The effect of substrate and interlayer on the microstructure and properties of the studied GLC films was then investigated using different characterization techniques. The results show that both the substrate and interlayer had an obvious influence on the tribological properties of the studied GLC films even though there was no significant structural difference between these films. Specifically, a substrate with a high hardness was propitious to achieving superior tribo-logical behaviors for carbon film even with a different interlayer. However, the interlayer had a distinct influence on the tribological properties of the carbon film deposited on different substrates, and this effect varied with the hardness property of the substrate. For a hard substrate, the wear rate and wear life were similar irrespective of the interlayer. For a soft substrate, the addition of a TiN interlayer improved the wear life sevenfold compared to the film with only a TiC/Ti interlayer, but the wear rate for a film with and without a TiN interlayer was approximately the same. The obvious discrepancy between wear life and wear rate for a carbon film deposited on soft substrate was closely related with the film adhesion strength and plastic deformation of the substrate materials. Based on these results, it can be concluded that the wear life is a better parameter than wear rate in terms of characterization of the wear resistance of carbon film once the applied load causes the plastic deformation of the substrate.
机译:使用不平衡磁控溅射系统,将四种类型的类石墨碳(GLC)膜沉积在具有不同夹层(TiC / Ti,TiC / Ti / TiN)的不同基板(Ti6Al4V,WC-27CrNi)上。然后使用不同的表征技术研究了基材和中间层对所研究的GLC膜的微观结构和性能的影响。结果表明,衬底和中间层都对所研究的GLC薄膜的摩擦学性能有明显影响,尽管这些薄膜之间没有明显的结构差异。具体地,即使具有不同的中间层,具有高硬度的衬底也有利于实现碳膜的优异的摩擦学行为。然而,中间层对沉积在不同基材上的碳膜的摩擦学性能具有明显的影响,并且该效果随基材的硬度性能而变化。对于硬质基材,无论中间层如何,其磨损率和磨损寿命都相似。对于软质基材,添加TiN中间层与仅具有TiC / Ti中间层的薄膜相比,其磨损寿命提高了七倍,但是具有和不具有TiN中间层的薄膜的磨损率大致相同。沉积在软质基底上的碳膜的磨损寿命与磨损率之间的明显差异与基底材料的膜粘附强度和塑性变形密切相关。基于这些结果,可以得出结论,一旦施加的载荷引起基材的塑性变形,就碳膜的耐磨性表征而言,耐磨寿命是比耐磨率更好的参数。

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