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首页> 外文期刊>Materials Research >Plasma nitriding of CA-6NM steel: effect of H2 + N2 gas mixtures in nitride layer formation for low N2 contents at 500 oC
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Plasma nitriding of CA-6NM steel: effect of H2 + N2 gas mixtures in nitride layer formation for low N2 contents at 500 oC

机译:CA-6NM钢的等离子渗氮:在500 oC下低N2含量下H2 + N2气体混合物对氮化物层形成的影响

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This work aims to characterize the phases, thickness, hardness and hardness profiles of the nitride layers formed on the CA-6NM martensitic stainless steel which was plasma nitrided in gas mixtures containing different nitrogen amounts. Nitriding was performed at 500 oC temperature, and 532 Pa (4 Torr) pressure, for gas mixtures of 5% N2 + 95% H2, 10% N2 + 90% H2, and 20% N2 + 80% H2, and 2 hours nitriding time. A 6 hours nitriding time condition for gas mixture of 5% N2 + 95% H2 was also studied. Nitrided samples results were compared with non-nitrided condition. Thickness and microstructure of the nitrided layers were characterized by optical microscopy (OM), using Villela and Nital etchants, and the phases were identified by X-ray diffraction. Hardness profiles and hardness measured on surface steel were determined using Vickers hardness and nanoindentation tester, respectively. It was verified that nitrided layer produced in CA-6NM martensitc stainless steel is constituted of compound layer, being that formation of the diffusion zone was not observed for the studied conditions. The higher the nitrogen amounts in gas mixture the higher is the thickness of the nitrided layer and the probability to form different nitride phases, in the case γ'-Fe4N, ε-Fe2-3N and CrN phases. Intrinsic hardness of the nitrided layers produced in the CA-6NM stainless steel is about 12-14 GPa (~1200-1400 HV).
机译:这项工作旨在表征在CA-6NM马氏体不锈钢上形成的氮化物层的相,厚度,硬度和硬度分布,这些氮化物层在含氮量不同的混合气体中被等离子体氮化。在5%N2 + 95%H2、10%N2 + 90%H2和20%N2 + 80%H2的气体混合物中,在500 oC温度和532 Pa(4 Torr)压力下进行渗氮时间。还研究了5%N2 + 95%H2气体混合物的6小时渗氮时间条件。将渗氮样品结果与未渗氮条件进行比较。使用Villela和Nital蚀刻剂,通过光学显微镜(OM)对渗氮层的厚度和微观结构进行了表征,并通过X射线衍射鉴定了相。使用维氏硬度和纳米压痕测试仪分别测定表面钢的硬度分布和硬度。证实了在CA-6NM马氏体不锈钢中产生的氮化层由化合物层构成,因为在所研究的条件下未观察到扩散区的形成。在γ'-Fe4N,ε-Fe2-3N和CrN相的情况下,气体混合物中的氮含量越高,氮化层的厚度和形成不同氮化物相的可能性就越高。 CA-6NM不锈钢中产生的氮化层的本征硬度约为12-14 GPa(〜1200-1400 HV)。

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