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首页> 外文期刊>Surface & Coatings Technology >Effects of gas nitriding pressure on the formation of nanocrystalline AlN in plasma nitrided Fe-9Al-28Mn-1.8C alloy
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Effects of gas nitriding pressure on the formation of nanocrystalline AlN in plasma nitrided Fe-9Al-28Mn-1.8C alloy

机译:气体氮化压力对等离子氮化Fe-9Al-28Mn-1.8C合金中纳米AlN形成的影响

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摘要

The effects of gas nitriding pressure on the formation of nanocrystalline nitrided layer and its effect on the performance of the Fe-9Al-28Mn-1.8C alloy (in wt.%) were investigated. Plasma nitriding was conducted at 450 °C for 12 h under nitriding pressures ranging from 133 to 798 Pa. The results evidently demonstrated that, due to the unique as-quenched microstructure of the present alloy, the effect of nitriding and aging could be achieved simultaneously with one-step plasma nitriding scheme. Both the thickness of nitrided layer and the nitrogen concentration at the outmost surface were found to increase with increasing gas nitriding pressure in the range of 133-798 Pa. Detailed microstructural analyses indicated that the nitrided layer is composed predominantly of nanocrystalline face-centered-cubic (FCC) B1-AlN and FCC γ′-Fe_4N with minor amount of expanded austenite phase, which accounts for the excellent surface microhardness and corrosion resistance in 3.5% NaCl solution. The increase in gas nitriding pressure led to a thicker nitrided layer and smaller AlN particles, which in turn, resulted in higher surface microhardness and better corrosion resistance.
机译:研究了气体氮化压力对纳米晶氮化层形成的影响及其对Fe-9Al-28Mn-1.8C合金性能的影响(以重量%计)。在133至798 Pa的氮化压力下,在450°C下进行了12h的等离子氮化。结果显然表明,由于本合金具有独特的淬火显微组织,可以同时获得氮化和时效的影响。一步骤等离子体氮化方案。发现在133-798 Pa范围内,氮化层的厚度和最外表面的氮浓度均随气体氮化压力的增加而增加。详细的微观结构分析表明,氮化层主要由纳米晶面心立方组成。 (FCC)B1-AlN和FCCγ'-Fe_4N具有少量的膨胀奥氏体相,这在3.5%NaCl溶液中具有优异的表面显微硬度和耐腐蚀性。气体氮化压力的增加导致氮化层更厚,AlN颗粒更小,进而导致更高的表面显微硬度和更好的耐腐蚀性。

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