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Microstructural evolution and high temperature oxidation characteristics of cold sprayed Ni-20Cr nanostructured alloy coating

机译:冷喷涂Ni-20Cr纳米结构合金涂层的微结构演化与高温氧化特性

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摘要

Mechanically alloyed Ni-20Cr (wt%) nanocrystalline powder was cold spray deposited on SA 516 Grade 70 steel. The microstructure and high temperature oxidation characteristics of Ni-20Cr nanostructured alloy coated steel have been investigated. The cyclic oxidation was conducted in air at 900 degrees C for periods up to 50 h. The coated steel was examined prior to and after cyclic oxidation using SEM, EDX, FIB, TEM and SAED. The TEM analyses showed that the coating exhibits equiaxed nanoscale microstructure. Interestingly, the high temperature cyclic exposure significantly influences the grain growth despite the segregation and preferential formation of nano islands of Cr2O3 within the coating matrix. Furthermore, the enhanced grain boundary diffusion of Cr in the nanostructured coating promotes the formation of denser Cr-rich protective surface oxide layer, which possesses a superior oxidation resistance, i.e. prevents the corrosion of substrate steel. The microstructural changes, crystallographic and chemical aspects of the Ni-20Cr nanostructured coating upon cyclic exposure are discussed in the context of its high temperature corrosion protection property.
机译:机械合金化的Ni-20cr(wt%)纳米晶粉末沉积在SA 516级钢上沉积冷喷雾。研究了Ni-20Cr纳米结构合金涂层钢的微观结构和高温氧化特性。环状氧化在900℃下在空气中进行,周期最多50小时。使用SEM,EDX,FIB,TEM和SAED在循环氧化之前和之后检查涂层钢。 TEM分析表明,涂层表现出等型纳米级微观结构。有趣的是,尽管在涂层基质中的Cr 2 O 3的纳米岛的分离和优先形成,但高温循环暴露显着影响晶粒生长。此外,Cr在纳米结构涂层中的增强晶界扩散促进了富含密度Cr的保护表面氧化物层的形成,其具有优异的抗氧化性,即防止基板钢的腐蚀。在其高温腐蚀性保护性的背景下讨论了循环暴露后Ni-20Cr纳米结构涂层的微观结构变化,晶体和化学方面。

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