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INFLUENCE OF OXYGEN IN A PLASMA NITRIDING PROCESS

机译:氧在等离子体氮化过程中的影响

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The influence of oxygen on the nitride layer formation on sintered steels was studied in a plasma nitriding reactor as a function of the gas mixture and sample composition. The nitride layers were characterized by metallographic and electronic microscopy techniques. The thickness, composition and microstructure of the layer were determined for three gas mixtures (100% N-2, 75% N-2 + 25% H-2 and 90% N-2 + 10% H-2) in plain sintered iron in Fe-1.5% Si sintered alloy. The plasma chemistry was studied by optical spectroscopy and mass spectrometry as a function of the oxygen concentration in the atmosphere in the range 0-4%. It was observed that for low oxygen concentrations (O-2 less than or similar to 4%), the layer thickness remain practically unaltered for the mixtures containing hydrogen, whereas the layer obtained when H-2 was not used is completely damaged if oxygen is present in the gas mixture. When the gas discharge is in a N-2-H-2 mixture, a loss of oxygen is detected by mass spectrometry. These results are correlated 2 with the sample analysis, and the depletion of the oxygen is interpreted in terms of oxygen-hydrogen reactions. [References: 14]
机译:在等离子渗氮反应器中研究了氧气对烧结钢上氮化物层形成的影响,作为气体混合物和样品成分的函数。通过金相和电子显微镜技术表征氮化物层。确定了在普通烧结铁中的三种混合气体(100%N-2、75%N-2 + 25%H-2和90%N-2 + 10%H-2)的厚度,组成和微观结构。在Fe-1.5%Si烧结合金中。通过光谱学和质谱学研究了等离子体化学随大气中氧浓度在0-4%范围内的函数。观察到,对于低氧浓度(O-2小于或等于4%),对于含氢的混合物,层厚度实际上保持不变,而如果不使用H-2,则不使用H-2时获得的层会完全损坏。存在于混合气体中。当气体排放为N-2-H-2混合物时,通过质谱法检测到氧气的损失。这些结果与样品分析相关[2],并且根据氧-氢反应来解释氧的消耗。 [参考:14]

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