Complex chromium alitization of carbon steels in chlorine environment

T.V. Loskutova, Y.A. Kononenko
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Abstract

The authors investigated the influence of the nature of the chlorine-containing activator on the structure, chemical composition, and some properties of diffusion layers formed during complex chromium-alloying of carbon steels in a chlorine environment. On the basis of thermodynamic calculations, the quantitative ratio of saturating elements (chromium and aluminum) and rational coating temperatures were determined. It was determined that for the complex chromoalitization of steels, an increased amount of chromium in the composition of the saturating mixture is necessary. Based on the data obtained, the temperature intervals for complex chromoalitization of carbon steels in a chlorine environment were recommended to be 800-1100°C. Coatings were applied at a temperature of 950-1050°C for 2 hours in a saturating mixture of the following composition: 45 % wt. chromium, 5 % wt. aluminum, 47 % wt. Al2O3 and 3.0 % by weight of the activator. The chlorine-containing compounds NH4Cl and NiCl2 were used as activators. The structure, chemical composition, and distribution of microhardness along the cross-section of the obtained chrome-aluminum coatings were investigated. It was found that the distribution of structural components in both types of coatings obtained at a temperature of 950 °C is almost identical. At the same time, the structure of the diffusion zone obtained by using NiCl2 as an activator shows the presence of a two-phase layer of dark inclusions, the main component of which is small columnar crystals. The thickness of the obtained coatings is 23-32 microns. An increase in the saturation temperature to 1050°C during complex chromoalitization using NH4Cl as an activator leads to an increase in the thickness of the resulting coatings to 200-220 microns, with the amount of aluminum on the surface being 16.59% by weight and chromium 4.36% by weight. Keywords: chromium, aluminum, carbon steel, activator, diffusion coatings.
碳钢在氯环境中的复合铬化
研究了含氯活化剂的性质对碳钢在氯环境下复合铬合金化过程中形成的扩散层的结构、化学组成和某些性能的影响。在热力学计算的基础上,确定了饱和元素(铬和铝)的定量比例和合理的涂层温度。结果表明,为了使钢的复色化,在饱和混合物的组成中增加铬的量是必要的。根据所获得的数据,建议碳钢在氯环境中复杂显色化的温度区间为800-1100℃。涂层在950-1050°C的温度下,在以下成分的饱和混合物中涂敷2小时:45%重量铬,5%重量铝,47%重量Al2O3和3.0%重量活化剂。采用含氯化合物NH4Cl和NiCl2作为活化剂。研究了制备的铬铝涂层的结构、化学成分和显微硬度沿截面分布。结果表明,在950℃温度下制备的两种涂层中结构组分的分布几乎相同。同时,用NiCl2作为活化剂获得的扩散区结构显示出两相黑色夹杂物层的存在,其主要成分是小柱状晶体。得到的涂层厚度为23-32微米。在复色化过程中,以NH4Cl为活化剂,将饱和温度提高到1050℃,涂层厚度增加到200-220微米,表面铝的重量为16.59%,铬的重量为4.36%。关键词:铬,铝,碳钢,活化剂,扩散涂层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
8 weeks
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