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The effect of pre-deposited titanium-based PVD metallic thin films on the nitrogen diffusion efficiency and wear behaviour of nitrided Ti alloys

机译:预沉积的钛基PVD金属薄膜对氮化Ti合金氮扩散效率及磨损行为的影响

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摘要

Low-temperature Triode Plasma Nitriding (TPN) has been reported to increase the load-bearing capacity of titanium alloys without compromising either core strength or fatigue resistance. It is known also that the effective adhesion between PVD hard coatings and titanium alloy substrates can be improved significantly following substrate diffusion pre-treatment. In TPN treatment the diffusion of the nitrogen can be achieved more efficiently (than conventional nitriding techniques) at a comparatively low substrate temperature and after relatively short treatment times. Moreover, there is evidence to suggest that the effectiveness of the triode-plasma diffusion treatment can be further increased by depositing a suitable thin PVD metallic layer on to the titanium alloy substrate before plasma nitriding treatment, to beneficially modify the diffusion kinetics. In this paper, both hcp-alpha and bcc-beta titanium coatings (the latter stabilised by the addition of Nb) are applied to (alpha + beta) Ti-6Al-4V and (beta) Ti-4Al-10V-22Mo substrate materials; the effects of a Ti and beta Ti-Nb PVD pre-coating on the diffusion treatment efficiency (and nitride phase development) and the wear behaviour of each of the Ti alloy substrates after TPN treatment at 700 degrees C is evaluated.
机译:据报道,低温三极管等离子体氮化(TPN)以增加钛合金的承载能力而不会损害芯强度或疲劳性。众所周知,在底物扩散预处理后,可以显着提高PVD硬涂层和钛合金基材之间的有效粘合。在TPN处理中,氮的扩散可以在相对低的衬底温度和相对较短的治疗时间之后更有效地(比传统的氮化技术)更有效地(常规的氮化技术)。此外,有证据表明,通过在等离子体氮化处理前将合适的薄PVD金属层沉积在钛合金基质上,可以进一步提高三血管血管扩散处理的有效性,以便有利地改变扩散动力学。本文施加HCP-α和BCC-β钛涂层(通过添加Nb稳定)施加至(α+β)Ti-6Al-4V和(β)Ti-4AL-10V-22MO底物材料;评估Ti和βTi-Nb PVD预涂对TPN处理在700℃下的TIP合金基材中的各种Ti合金基质的磨损行为的影响。

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