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Low-temperature plasma carburizing of AISI 420 martensitic stainless steel: Influence of gas mixture and gas flow rate

机译:AISI 420马氏体不锈钢的低温等离子体渗碳:气体混合物和气体流量的影响

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摘要

Low-temperature plasma carburizing was studied aiming to determine the effect of the gas mixture and flow rate on the surface properties of AISI 420 martensitic stainless steel samples. Plasma carburizing was carried out for gas mixtures of 20% Ar+80% H 2 comprising CH 4 contents between 0.25 and 1.00%, and gas flow rates ranging from 1.67×10~(-6) to 6.68×10~(-6)Nm~3s~(-1). The modified layers were characterized by confocal laser scanning microscopy, X-ray diffractometry and microhardness measurements. The plasma was also characterized by optical emission spectrometry. Results indicate the presence of a hard and thin outer layer and a carbon-enriched martensite diffusion layer. It is shown that gas mixture composition plays an important role in the process kinetics. Spectroscopic characterization of the glow discharge shows that the variation of the CH_4 content in the gas mixture leads to a variation of the emission lines intensity but does not significantly alter the relative peak intensities. It suggests a variation on the plasma density and no significant variation on the active species. It also indicates that, for the studied conditions, the emission spectroscopy cannot be applied as a tool for process control.
机译:研究低温等离子渗碳的目的在于确定混合气体和流速对AISI 420马氏体不锈钢样品表面性能的影响。对20%Ar + 80%H 2且CH 4含量在0.25%至1.00%之间的气体混合物进行了等离子渗碳,气体流量范围为1.67×10〜(-6)至6.68×10〜(-6) Nm〜3s〜(-1)。通过共聚焦激光扫描显微镜,X射线衍射和显微硬度测量来表征改性层。等离子体也通过光发射光谱法表征。结果表明存在硬而薄的外层和富碳马氏体扩散层。结果表明,气体混合物的组成在过程动力学中起着重要的作用。辉光放电的光谱表征表明,混合气体中CH_4含量的变化导致发射线强度的变化,但不会显着改变相对峰强度。这表明血浆密度有变化,而活性物质无明显变化。它还表明,对于研究的条件,发射光谱不能用作过程控制的工具。

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