The corrosion-resistant Ni-based coatings and their tribological properties

Q3 Materials Science
E. Zdravecká, J. Tkáčová
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引用次数: 1

Abstract

Abstract Ni-based coatings can be successfully applied under abrasive and adhesive conditions as a substitute for environmentally harmful chrome coatings. The research has been carried out for thermally flame sprayed Ni-based coatings with remelting (so-called the two-step process) with the different chemical composition of starting powders. The structure of coatings was evaluated by optical and scanning electron microscopy. Both the three-body abrasive wear test, according to ASTM G65-4 (Dry-Sand Rubber Wheel Test) and dry sliding wear test by the Falex tester, were performed. The results show the influence of the effective chemical composition of the metal powders on improving the properties of the coating. The higher hardness of the coatings leads to a lower tendency for the creation of adhesive bonds, and as a result, leads to a lower tendency to scuffing. A similar trend shows the influence of higher coating hardness on the increasing of abrasive wear resistance.
耐腐蚀镍基涂层及其摩擦学性能
摘要镍基涂层可以在研磨和粘合条件下成功应用,取代对环境有害的铬涂层。对不同化学成分的起始粉末进行了重熔(即所谓的两步工艺)的热火焰喷涂镍基涂层的研究。通过光学显微镜和扫描电子显微镜对涂层的结构进行了评价。根据ASTM G65-4(干砂橡胶轮试验)进行三体磨料磨损试验,并通过Falex试验机进行干滑动磨损试验。结果表明,金属粉末的有效化学成分对涂层性能的改善有一定的影响。涂层的硬度越高,产生粘合的趋势越低,因此,产生胶合的趋势越小。类似的趋势表明,涂层硬度越高,耐磨性越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Koroze a ochrana materialu
Koroze a ochrana materialu Materials Science-Materials Science (all)
CiteScore
3.00
自引率
0.00%
发文量
8
审稿时长
14 weeks
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