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Plasma post oxidation of nitrocarburized AISI 4140 steel

机译:碳氮化氧化碳氧化氮氧化AISI 4140钢

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Plasma nitrocarburizing and plasma oxidizing treatments were performed to improve the wear and corrosion resistance of AISI 4140 steel. Plasma nitrocarburizing was conducted for 3 h at 570 °C in the nitrogen , hydrogen and methane atmosphere to produce the ε-Fe_(2 -3) (N, C) phase. It was found that the compound layer produced by plasma nitrocarburising was predominantly composed of ε-phase, with a small proportion of γ'-Fe_4(N,C) phase. The thickness of the compound layer was about 10 μm and the diffusion layer was about 300 μm in thickness, respectively. Plasma post oxidation was performed on the nitrocarburized samples with various oxygen/hydrogen ratio at a constant temperature of 500 °C for 1 h. The very thin magnetite (Fe_3O_4) layer 1-2 μm in thickness on top of the compound layer was obtained by plasma post oxidation . It was confirmed that the corrosion characteristics of the nitrocarburized compound layer can be further improved by the application of the superficial magnetite layer.
机译:进行等离子体氮碳化和血浆氧化处理,以提高AISI 4140钢的耐磨性和耐腐蚀性。在570℃下在氮气,氢气和甲烷气氛中在570℃下进行硫核碳,以产生ε-fe_(2 -3)(n,c)相。发现通过血浆氮气产生的化合物层主要由ε-阶段组成,γ'-fe_4(n,c)相的少量比例。化合物层的厚度为约10μm,分别厚度为约300μm。在氮的氧化样品上以500℃的恒定温度为1小时,在氮碳/氢的样品上进行血浆后氧化。通过血浆后氧化得到化合物层顶部的非常薄的磁铁矿(Fe_3O_4)层1-2μm。证实可以通过施加浅表磁铁矿层进一步提高氮碳化合物层的腐蚀特性。

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