Cathodic Cage Plasma Nitriding: An Innovative Technique

R. Sousa, F. O. D. Araújo, J. D. Costa, A. Brandim, R. A. Brito, C. Alves
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引用次数: 14

Abstract

Cylindrical samples of AISI 1020, AISI 316, and AISI 420 steels, with different heights, were simultaneously treated by a new technique of ionic nitriding, entitled cathodic cage plasma nitriding (CCPN), in order to evaluate the efficiency of this technique to produce nitrided layers with better properties compared with those obtained using conventional ionic nitriding technique. This method is able to eliminate the edge effect in the samples, promoting a better uniformity of temperature, and consequently, a smaller variation of the thickness/height relation can be obtained. The compound layers were characterized by X-ray diffraction, optical microscopy, and microhardness test profile. The results were compared with the properties of samples obtained with the conventional nitriding, for the three steel types. It was verified that samples treated by CCPN process presented, at the same temperature, a better uniformity in the thickness and absence of the edge effect.
阴极笼等离子体氮化:一种创新技术
采用离子氮化新技术——阴极笼等离子体氮化(CCPN)同时处理不同高度的AISI 1020、AISI 316和AISI 420钢的圆柱形试样,以评价该技术制备的氮化层性能优于传统离子氮化技术。该方法能够消除样品中的边缘效应,提高温度的均匀性,从而获得较小的厚度/高度关系变化。通过x射线衍射、光学显微镜和显微硬度测试对复合层进行了表征。对三种钢的渗氮结果与常规渗氮试样的性能进行了比较。结果表明,在相同温度下,经CCPN工艺处理的样品具有较好的厚度均匀性和无边缘效应。
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