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Wear of diffusion hardened Ti-6Al-4V sliding against tool steel

机译:扩散硬化的Ti-6Al-4V在工具钢上滑动的磨损

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摘要

Titanium has very poor tribological properties. Various coatings can be used, for example TiN and DLC, to improve them, but the loading is limited by the low strength of the substrate. In recent years thermochemical diffusion treatments have been developed. In order to produce a layer sufficiently thick to support a load in a reasonable time, these treatments have to be carried out at high temperatures: 950℃ and 1050℃ for oxidation and nitriding processes respectively. Such high treatment temperatures can degrade the core properties to such an extent that they must be heat treated again after the surface layer has been produced. An alternative treatment was found that gave a substantive load bearing layer at a treatment temperature of 850℃ or lower without degrading the core properties. The optimised diffusion hardened layers had a thin TiO_2 and/or TiC surface layer. Three such layers with different surface chemistries were found to have formed on Ti-6Al-4V by exposure to oxygen, carbon dioxide or carbon monoxide. Under dry wear conditions the layer formed during carbon monoxide exposure was found to give the best results. Under the same conditions this layer gave an order of magnitude less wear than carburised 21NiCrMo2 steel. In lubricated wear tests, the wear was very low.
机译:钛的摩擦学性能非常差。可以使用各种涂层,例如TiN和DLC来改善它们,但是载荷受到基材强度低的限制。近年来,已经开发出热化学扩散处理。为了产生足够厚的层以在合理的时间内支撑负载,必须在高温下分别进行这些处理:氧化和氮化工艺分别在950℃和1050℃的高温下进行。如此高的处理温度会使芯材性能下降到一定程度,以至于必须在生产表面层后再次对其进行热处理。发现另一种处理方法是在850℃或更低的处理温度下提供足够的承重层,而不会降低核心性能。优化的扩散硬化层具有薄的TiO_2和/或TiC表面层。发现通过暴露于氧气,二氧化碳或一氧化碳,在Ti-6Al-4V上形成了具有不同表面化学性质的三个此类层。在干磨条件下,发现一氧化碳暴露期间形成的层可提供最佳结果。在相同条件下,该层的磨损比渗碳21NiCrMo2钢少一个数量级。在润滑磨损测试中,磨损非常低。

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