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The Properties of Binary and Ternary Ti Based Coatings Produced by Thermionic Vacuum Arc (TVA) Technology

机译:高温真空弧(TVA)技术生产二元和三元Ti基涂层的性质

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A series of the multicomponent thin films (binary: Ti-C; Ti-Ag and ternary: Ti-C-Ag; Ti-C-Al) were fabricated by Thermionic Vacuum Arc (TVA) technology in order to study the wear resistance and the anticorrosion properties. The effects of Ti amount on the microstructure, tribological and morphological properties were subsequently investigated. TVA is an original deposition method using a combination of anodic arc and electron gun systems for the growth of films. The samples were characterized using scanning electron microscope (SEM) and a transmission electron microscope (TEM) accompanied by selected area electron diffraction (SAED). Tribological properties were studied by a ball-on-disc tribometer in the dry regime and the wettability was assessed by measuring the contact angle with the See System apparatus. Wear Rate results indicate an improved sliding wear behavior for Ti-C-Ag: 1.31 × 10 ?7 mm 3 /N m ( F = 2 N) compared to Ti-C-Al coating wear rate: 4.24 × 10 ?7 mm 3 /N m. On the other hand, by increasing the normal load to 3 N an increase to the wear rate was observed for Ti-C-Ag: 2.58 × 10 ?5 mm 3 compared to 2.33 × 10 ?6 mm 3 for Ti-C-Al coating.
机译:通过热离子真空弧(TVA)技术制造了一系列多组分薄膜(二元:Ti-C; Ti-Ag和三元:Ti-C-A1),以研究耐磨性和耐磨性防腐性质。随后研究了Ti对微观结构,摩擦学和形态学性质的影响。 TVA是一种原始沉积方法,使用阳极电弧和电子枪系统的组合,用于薄膜的生长。使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)以选定的区域电子衍射(SAED)为特征。通过在干燥状态下的球形盘摩擦计研究摩擦学特性,通过测量与参见系统装置的接触角来评估润湿性。磨损率结果表明,与Ti-C-Al涂层磨损率相比,Ti-C-AG的改善的滑动磨损行为:1.31×10?7mm 3 / N m(f = 2n):4.24×10?7 mm 3 / n m。另一方面,通过将正常载荷增加至3 n,对于Ti-C-AG观察到增加磨损率:2.58×10?5mm 3,而Ti-C-Al为2.33×10?6 mm 3相比涂层。

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