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Wear and Corrosion Resistance of Cold-Sprayed Cu-Based Composite Coatings on Magnesium Substrate

机译:冷喷涂Cu基复合涂层对镁基材的耐磨性和耐腐蚀性

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摘要

The applications of magnesium-based alloys are often limited by their poor corrosion and wear resistance performance. The aim of this study is to improve the performance of magnesium alloys by using metal-ceramic coatings. Cu-Ni/Al2O3 and Cu-Zn/Al2O3 coatings were deposited by cold spray. Their microstructure, microhardness, tribological, and corrosion behavior were compared with those of Cu-Al2O3 coatings. The results showed that the Cu-Al2O3 coatings exhibited higher microhardness, lower wear rate, and better corrosion resistance than the Mg alloy substrate, but their antifriction performance was not ideal. Adding Ni or Zn to the Cu-Al2O3 coating resulted in a denser coating with lower porosity. Ni increased the microhardness of the Cu-Al2O3 coating but did not improve its antifriction performance or wear resistance, while Zn increased the microhardness, antifriction performance, and wear resistance of the Cu-Al2O3 coating. The corrosion resistance of the Cu-Al2O3 coating was enhanced by adding Ni, which improved the compactness of the coating, in contrast to the addition of Zn, as the rapid corrosion of Zn resulted in formation of loose corrosion products without protective effect. Thus, such modification of Cu-Al2O3 coatings should be based on application requirements.
机译:镁基合金的应用通常受其腐蚀和耐磨性性能差的限制。本研究的目的是通过使用金属陶瓷涂料来提高镁合金的性能。通过冷喷雾沉积Cu-Ni / Al 2 O 3和Cu-Zn / Al 2 O 3涂层。将它们的微观结构,微硬度,摩擦学和腐蚀行为与Cu-Al2O3涂层的微观结构,微硬度,摩擦行为进行了比较。结果表明,Cu-Al 2 O 3涂层表现出较高的显微硬度,较低的磨损率和比Mg合金基材更好的耐腐蚀性,但它们的抗抗性性能并不理想。将Ni或Zn添加到Cu-Al 2 O 3涂层中,导致具有较低孔隙率的密集涂层。 Ni增加了Cu-Al2O3涂层的显微性,但未提高其耐抗耐耐耐耐耐耐耐耐性性,而Zn增加了Cu-Al2O3涂层的微硬度,耐抗耐抗性和耐磨性。通过添加Ni加入Cu-Al2O3涂层的耐腐蚀性,其改善涂层的紧凑性与Zn的加入相比,因为Zn的快速腐蚀导致形成松散的腐蚀产品而没有保护作用。因此,Cu-Al2O3涂层的这种改性应基于应用要求。

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