首页> 外文会议>5th International Symposium on the Industrial Applications of the Moessbauer Effect Aug 13-18, 2000 Virginia Beach, Virginia >Laser Nitriding of Iron, Stainless Steel, and Plain Carbon Steel Investigated by Moessbauer Spectroscopy
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Laser Nitriding of Iron, Stainless Steel, and Plain Carbon Steel Investigated by Moessbauer Spectroscopy

机译:莫斯鲍尔光谱法研究铁,不锈钢和碳素钢的激光渗氮

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Nitriding is a common method for improving the hardness, mechanical properties, wear and corrosion resistance of metals. Laser nitriding of metals is an efficient process, where the irradiation of surfaces in air or nitrogen atmospheres with short laser pulses leads to a fast take-up of nitrogen into the irradiated surfaces. This process has been extensively investigated for pure iron, but usually, no tools or functional parts are made of pure iron. Mainly steel or cast iron is used as a base material. Therefore, when looking for technical applicability, also the influence of alloying elements on the laser nitriding process is of great interest. Besides the pure iron various carbon steels and an austenitic stainless steel were studied in laser nitriding experiments in order to investigate the influence of the material itself. Here, the process is investigated via Conversion Electron and X-ray Moessbauer Spectroscopy (CEMS and CXMS), Resonant Nuclear Reaction Analysis (RNRA), and X-Ray Diffraction (XRD). It appears that carbon steels are even better suited for the laser nitriding process than pure iron, and the laser nitriding also works efficiently for the stainless steel which is normally difficult to be nitrided.
机译:氮化是提高金属硬度,机械性能,耐磨性和耐腐蚀性的常用方法。金属的激光氮化是一种有效的方法,其中在空气或氮气气氛中用短的激光脉冲辐照会导致氮气快速吸收到被辐照的表面中。对于纯铁,已经对该方法进行了广泛的研究,但是通常,没有工具或功能部件由纯铁制成。主要使用钢或铸铁作为基础材料。因此,在寻求技术适用性时,合金元素对激光氮化工艺的影响也引起了极大的兴趣。除纯铁外,还在激光氮化实验中研究了各种碳钢和奥氏体不锈钢,以研究材料本身的影响。在此,通过转换电子和X射线Moessbauer光谱法(CEMS和CXMS),共振核反应分析(RNRA)和X射线衍射(XRD)对过程进行了研究。似乎碳钢比纯铁更适合于激光氮化工艺,并且激光氮化对于通常难以氮化的不锈钢也有效。

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