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Nitrocarburizing treatments using flowing afterglow processes

机译:使用流动的余辉工艺进行氮碳共渗处理

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Nitrocarburizing of pure iron samples is achieved at 853 K and is easily controlled by introducing C3H8 in the afterglow of a flowing microwave Ar-N-2-H-2 plasma. The carbon uptake in the solid is actually possible with methane but strongly limited. The use of propane enhances the carbon flux and the Flat configuration is synthesized for the first time by this kind of process. For this stack, diffusion paths in the ternary system determined from chemical analyses by secondary neutral mass spectrometry reproduce satisfactorily X-ray diffraction results which only reveal, as optical micrographs, epsilon and alpha phases. Propane offers an accurate control of the nitrocarburizing conditions. As an example, a modulation of N and C contents in iron could be achieved to create new carbonitride multilayers. (c) 2005 Elsevier B.V All rights reserved.
机译:纯铁样品的氮碳共渗在853 K时实现,可以通过在流动的微波Ar-N-2-H-2等离子体余辉中引入C3H8来轻松控制。甲烷实际上可能吸收固体中的碳,但受到严格限制。丙烷的使用提高了碳通量,并且通过这种方法首次合成了扁平构型。对于该叠层,通过二次中性质谱从化学分析确定的三元体系中的扩散路径令人满意地再现了X射线衍射结果,该结果仅以光学显微照片的形式揭示了ε相和α相。丙烷可精确控制氮碳共渗条件。例如,可以实现铁中N和C含量的调节,以创建新的碳氮化物多层。 (c)2005 Elsevier B.V保留所有权利。

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