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Mechanical and tribological properties of Cr-Nb double-glow plasma coatings deposited on TiAl alloy

机译:Tial合金表面Cr-Nb双辉等离子涂层的力学和摩擦学性能

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摘要

Double-glow plasma (DGP) coatings are recommended for metallic components to mitigate the damage induced by complex working conditions in previous studies. In this paper, Nb-rich (Cr–Nb₄) and Cr-rich (Cr₄–Nb) -alloyed layers were formed onto the Ti–Al substrate via a DGP process to enhance its wear resistance. Scratch and Nano-indentation tests were used to evaluate the mechanical properties of the coatings. The tribological behaviour of the coatings were investigated using a pin-on-disc tribometer by rubbing against the GCr15 ball. Results from surface analysis techniques showed that the coatings mainly comprised Cr, Nb and Cr₂–Nb phases, and were well bonded to the substrate. The hardness of the Cr–Nb₄ coating was 11.61GPa and the Cr₄–Nb coating was 9.66 GPa which all higher than that of the uncoated Ti–Al which was 5.65 GPa. However, the critical load of the Cr₄–Nb coating ~21.64 was higher than that of the Cr–Nb₄ coating ~17.6. And the specific wear rate of Cr–Nb₄ coating, Cr₄–Nb coating and uncoated Ti–Al were 3.54 × 10−⁴, 0.01 × 10−⁴ and 1.53 × 10−⁴mm³ N−¹ m−¹, respectively. The low-wear mechanism of the coatings is discussed in detail in this paper.
机译:在以前的研究中,建议将双辉光等离子体(DGP)涂层用于金属部件,以减轻复杂的工作条件引起的损坏。在本文中,通过DGP工艺在Ti-Al基底上形成了富Nb(Cr-Nb₄)和富Cr(Cr₄-Nb)合金层,以增强其耐磨性。划痕和纳米压痕测试用于评估涂层的机械性能。使用销盘式摩擦计通过摩擦GCr15球来研究涂层的摩擦学行为。表面分析技术的结果表明,该涂层主要包含Cr,Nb和Cr2-Nb相,并且与基材的结合良好。 Cr–Nb₄涂层的硬度为11.61GPa,Cr₄–Nb涂层的硬度为9.66 GPa,均高于未涂层的Ti–Al的硬度5.65 GPa。但是,Cr₄-Nb₄涂层的临界载荷〜21.64高于Cr-Nb₄涂层的临界载荷〜17.6。 Cr–Nb₄涂层,Cr₄–Nb涂层和未涂层​​的Ti–Al的比磨损率分别为3.54×10−1、0.01×10−3和1.53×10−3mm³ N-1 m-1。本文详细讨论了涂层的低磨损机理。

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