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Multifunctional Ti based carbonitride coatings for applications in severe environments

机译:多功能Ti基碳氮化物涂料,适用于恶劣环境

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摘要

In this work, the influence of NbZr and ZrSi addition to TiCN coatings are studied, aiming for their use as protective layers for parts subjected to severe corrosion and wear. The coatings with C/N ratios ranging from 0.4 to 2.5 were deposited using the cathodic arc technique in a mixture of N-2 and CH4 gases, on 316 stainless steel discs and Si (111) wafers. All the coatings exhibited residual compressive stresses, with values ranging from approximately-2.4 GPa to -3.5 GPa. The addition of Si led to an increase in hardness, regardless of the C/N ratio. All coatings with high C/N ratio (similar to 2.5) presented slightly lower stress values and superior performance in 3.5% NaCl corrosive solutions, the best performance being obtained for the TiSiZrCN coating, which exhibited the highest protective efficiency to corrosion (97.8%), due to its low corrosion current density (1.734 mu A/cm(2)) and high polarization resistance (31.775 k Omega). The tribological tests, performed at 23 degrees C and 250 degrees C, indicated that abrasion and oxidation were the predominant wear mechanism for all coatings. At 23 degrees C, the friction coefficients of the coated specimens were significantly lower than those of the uncoated samples. When the collective performance across all of the experimental parameters was assessed, the coatings with C/N of about 2.5 proved to be the most suitable candidates to be used in severe service conditions.
机译:在这项工作中,研究了TiCN涂层中NbZr和ZrSi的影响,旨在将它们用作遭受严重腐蚀和磨损的零件的保护层。使用阴极电弧技术,在316不锈钢圆盘和Si(111)晶片上,使用N-2和CH4气体的混合物,将C / N比为0.4到2.5的涂层沉积。所有涂层均表现出残余压缩应力,其值范围约为-2.4 GPa至-3.5 GPa。不论C / N比如何,Si的添加都会导致硬度的增加。所有具有高C / N比(约2.5)的涂层在3.5%NaCl腐蚀性溶液中均表现出稍低的应力值和优异的性能,其中TiSiZrCN涂层获得了最佳性能,表现出最高的耐腐蚀性能(97.8%) ,由于其低腐蚀电流密度(1.734μA / cm(2))和高极化电阻(31.775 k Omega)。在23摄氏度和250摄氏度下进行的摩擦学测试表明,磨损和氧化是所有涂层的主要磨损机理。在23摄氏度时,涂层样品的摩擦系数明显低于未涂层样品的摩擦系数。当评估所有实验参数的综合性能时,C / N约为2.5的涂料被证明是最适用于恶劣工况的涂料。

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  • 来源
    《Thin Solid Films》 |2019年第31期|63-75|共13页
  • 作者单位

    Univ Birmingham, Sch Engn, Dept Mech Engn, Mason Inst Tribol, 142 Edgbaston Pk Rd, Birmingham B15 2TT, W Midlands, England|Imperial Coll London, Dept Mech Engn, Mech Mat Div, South Kensington Campus, London SW7 2AZ, England;

    Natl Inst Res & Dev Optoelect INOE 2000, 409 Atomistilor St, RO-77125 Bucharest, Romania|Natl Res Tomsk Polytech Univ, 43 Lenin Ave, Tomsk 634050, Russia;

    Natl Inst Res & Dev Optoelect INOE 2000, 409 Atomistilor St, RO-77125 Bucharest, Romania;

    Natl Inst Res & Dev Optoelect INOE 2000, 409 Atomistilor St, RO-77125 Bucharest, Romania;

    Univ Birmingham, Sch Engn, Dept Mech Engn, Mason Inst Tribol, 142 Edgbaston Pk Rd, Birmingham B15 2TT, W Midlands, England;

    Natl Inst Res & Dev Optoelect INOE 2000, 409 Atomistilor St, RO-77125 Bucharest, Romania;

    Natl Inst Res & Dev Optoelect INOE 2000, 409 Atomistilor St, RO-77125 Bucharest, Romania;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    TiCN; Hard coatings; Corrosion and wear resistance; Cathodic arc deposition;

    机译:TiCN;硬质涂层;耐腐蚀和耐磨性;阴极电弧沉积;

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