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Influence of Nickel-Coated Nanostructured WC-Co Powders on Microstructural and Tribological Properties of HVOF Coatings

机译:镀镍纳米结构WC-Co粉末对HVOF涂层的微观结构和摩擦学性能的影响

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摘要

In this research, a novel nickel-coated nanostructured WC-12Co powder (Nic-WC) was developed and used as feedstock material for high velocity oxygen fuel process. The Nic-WC powders with average WC grain size of similar to 15 nm were produced by mechanical milling and electroless plating processes. The microstructural and tribological characteristics of Nic-WC coating were investigated and compared with those of microcrystalline WC-12Co (mc-WC) and nanostructured WC-12Co (nc-WC) coatings. X-ray diffractometry, high-resolution field emission scanning electron microscopy, and transmission electron microscopy were used to evaluate the microstructure of the powders and coatings. A ball-on-disk technique was used to probe the wear behavior of the coatings. The Nic-WC coating showed negligible decarburization of similar to 5.4%, while mc-WC and nc-WC coatings suffered from higher decarburization levels of 16.3 and 36.8%. The wear rate of Nic-WC coating was 2.5 x 10(-4) mg/m indicating similar to 75 and 82% increase in wear resistance compared with mc-WC and nc-WC coatings. The wear track analysis of mc-WC and nc-WC coatings showed evidences of delamination mechanism. Besides, a severe carbide pullout mechanism was operative in wear of nc-WC coating. As for Nic-WC coating, individual carbide pullout following the elimination of Ni(Co) matrix was the predominant wear mechanism.
机译:在这项研究中,开发了一种新型的镍包覆的纳米结构的WC-12Co粉末(Ni / nc-WC),并用作高速氧气燃料工艺的原料。通过机械研磨和化学镀工艺生产的平均WC粒度接近15 nm的Ni / nc-WC粉末。研究了Ni / nc-WC涂层的微观结构和摩擦学特性,并与微晶WC-12Co(mc-WC)和纳米结构WC-12Co(nc-WC)涂层进行了比较。 X射线衍射,高分辨率场发射扫描电子显微镜和透射电子显微镜被用来评估粉末和涂层的微观结构。盘上球技术用于探测涂层的磨损行为。 Ni / nc-WC涂层的脱碳率可忽略不计,约为5.4%,而mc-WC和nc-WC涂层的脱碳率更高,分别为16.3和36.8%。 Ni / nc-WC涂层的磨损率为2.5 x 10(-4)mg / m,表明与mc-WC和nc-WC涂层相比,耐磨性提高了75%和82%。 mc-WC和nc-WC涂层的磨损轨迹分析显示了分层机制的证据。此外,在nc-WC涂层的磨损中,严重的碳化物拔出机制起作用。对于Ni / nc-WC涂层,消除Ni(Co)基体之后的单个碳化物拔出是主要的磨损机理。

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