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Nanocrystalline Electrodeposited Fe-W/Al2O3 Composites: Effect of Alumina Sub-microparticles on the Mechanical, Tribological, and Corrosion Properties

机译:纳米晶电沉积Fe-W / Al2O3复合材料:氧化铝亚微粒对机械,摩擦学和腐蚀性能的影响

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In this study, nanocrystalline Fe-W alloy and Fe-W/Al2O3 composite coatings with various contents of submicrosized alumina particles have been obtained by electrodeposition from an environmentally friendly Fe(III)-based electrolyte with the aim to produce a novel corrosion and wear resistant material. The increase in volume fraction of Al2O3 in deposits from 2 to 12 % leads to the grain refinement effect, so that the structure of the coatings changes from a nanocrystalline to amorphous-like with grain sizes below 20 nm. Nevertheless, the addition of particles to the Fe-W matrix does not prevent the development of a columnar structure revealed for all the types of studied coatings. The observed reduction in both hardness and elastic modulus of the Fe-W/Al2O3 composites is attributed to the apparent grain size refinement/amorphization and the nanoporosity surrounding the embedded Al2O3 particles. In the presence of 12 vol% of Al2O3 in deposits the wear rate decreases by a factor of 10 as compared to Fe-W alloy tested under dry friction conditions due to the lowering of tribo-oxidation. The addition of alumina particles slightly increases the corrosion resistance of the coatings; however, the corrosion in neutral chloride solution occurs through the preferential dissolution of Fe from the matrix. The obtained results provide a possibility to integrate the nanocrystalline Fe-W/Al2O3 composite coatings into various systems working under dry friction conditions, for example, in high-temperature vacuum systems.
机译:在这项研究中,通过从环境友好的Fe(III)基电解质中进行电沉积,获得了具有各种含量的亚微细氧化铝颗粒的纳米晶Fe-W合金和Fe-W / Al2O3复合涂层,目的是产生新型的腐蚀和磨损耐材料。沉积物中Al2O3的体积分数从2%增加到12%导致晶粒细化效果,因此涂层的结构从纳米晶变为非晶态,晶粒尺寸小于20 nm。然而,向Fe-W基体中添加颗粒并不能阻止所有类型的研究涂层所揭示的柱状结构的发展。观察到的Fe-W / Al2O3复合材料的硬度和弹性模量降低均归因于表观晶粒尺寸的细化/非晶化以及包埋的Al2O3颗粒周围的纳米孔隙。与在干摩擦条件下测试的Fe-W合金相比,在沉积物中存在12%(体积)的Al2O3时,磨损率由于摩擦氧化的降低而降低了10倍。氧化铝颗粒的加入会稍微提高涂层的耐腐蚀性;但是,中性氯化物溶液中的腐蚀是由于铁优先从基体中溶解而发生的。所获得的结果提供了将纳米晶体Fe-W / Al 2 O 3复合涂层整合到在干摩擦条件下工作的各种系统中的可能性,例如在高温真空系统中。

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