The Formation of C-S Coatings by Electrospark Alloying with the Use Special Process Media

Oksana Haponova, V. Tarelnyk, Nataliia Tarelnyk, P. Kurp
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Abstract

The paper presents an analysis of technologies for improving the quality parameters of the surface layers of parts, which were carried out by the method of electrospark alloying (ESA) and by additional saturation of surfaces with alloying elements from special process media (STM). The technology of sulfocementation was considered. Metallographic and hardness tests after sulfocementation by ESA showed that the treated surface consists of layers: "soft", hardened and base metal. As the discharge energy increases, the thickness, microhardness and integrity of the coating increase. The presence of sulfur in STM promotes the sulfidation process. It is shown that sulfur accumulates on the surface of the metal at a depth of up to 30 μm. This zone is characterized by reduced microhardness. A strengthened layer is formed under this layer, it has an increased carbon content and high microhardness.
使用特殊工艺介质通过电火花合金形成 C-S 涂层
本文分析了改善零件表面层质量参数的技术,这些技术是通过电火花合金化(ESA)方法和用特殊工艺介质(STM)中的合金元素对表面进行额外饱和来实现的。同时还考虑了磺化技术。通过 ESA 磺化处理后的金相和硬度测试表明,处理后的表面由多层组成:软 "层、硬化层和基底金属层。随着放电能量的增加,涂层的厚度、显微硬度和完整性也随之增加。STM 中硫的存在促进了硫化过程。研究表明,硫在金属表面的积聚深度可达 30 μm。该区域的特点是显微硬度降低。在该层下形成了一个强化层,它具有更高的碳含量和显微硬度。
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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