Laser borided composite layer produced on austenitic 316L steel

D. Mikołajczak, M. Kulka, N. Makuch
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引用次数: 18

Abstract

Abstract Abstract Austenitic 316L steel is well-known for its good resistance to corrosion and oxidation. Therefore, this material is often used wherever corrosive media or high temperatures are to be expected. The main drawback of this material is very low hardness and low resistance to mechanical wear. In this study, the laser boriding was used in order to improve the wear behavior of this material. As a consequence, a composite surface layer was produced. The microstructure of laser-borided steel was characterized by only two zones: re-melted zone and base material. In the re-melted zone, a composite microstructure, consisting of hard ceramic phases (borides) and a soft austenitic matrix, was observed. A significant increase in hardness and wear resistance of such a layer was obtained.
在316L奥氏体钢上制备激光渗硼复合层
摘要奥氏体316L钢以其良好的抗腐蚀和抗氧化性能而闻名。因此,这种材料通常用于腐蚀性介质或高温环境。这种材料的主要缺点是硬度很低,耐机械磨损性很低。为了改善这种材料的磨损性能,本研究采用了激光渗硼。因此,产生了复合表面层。激光渗硼钢的显微组织主要表现为两个区:再熔区和母材区。在重熔区,观察到由硬质陶瓷相(硼化物)和软奥氏体基体组成的复合组织。该层的硬度和耐磨性显著提高。
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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