Microstructure, phase composition and corrosion resistance of Ni2O3 coatings produced using laser alloying method

A. Bartkowska, D. Przestacki, T. Chwalczuk
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引用次数: 5

Abstract

Abstract The paper presents the studies' results of microstructure, microhardness, cohesion, phase composition and the corrosion resistance analysis of C45 steel after laser alloying with nickel oxide (Ni2O3). The aim of the laser alloying was to obtain the surface layer with new properties through covering C45 steel by precoat containing modifying compound, and then remelting this precoat using laser beam. As a result of this process the surface layer consisting of remelted zone and heat affected zone was obtained. In the remelted zone an increased amount of modifying elements was observed. It was also found that the surface layer formed during the laser alloying with Ni2O3 was characterized by good corrosion resistance. This property has changed depending on the thickness of the applied precoat. It was observed that the thickness increase of nickel oxides precoat improves corrosion resistance of produced coatings.
激光合金化法制备Ni2O3涂层的显微组织、相组成及耐蚀性
摘要:本文介绍了用Ni2O3激光合金化C45钢后的显微组织、显微硬度、内聚力、相组成及耐蚀性分析的研究结果。激光合金化的目的是通过在C45钢表面覆盖含有改性化合物的预涂层,然后用激光束重熔该预涂层,获得具有新性能的表层。通过该工艺得到了由重熔区和热影响区组成的表面层。在重熔区,观察到改性元素的数量增加。激光合金化过程中形成的表面层具有良好的耐蚀性。该特性会根据所涂预涂层的厚度而变化。结果表明,增加氧化镍预涂层的厚度可以提高涂层的耐蚀性。
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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