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Influence of Manufacturing Conditions of Carbonitriding on Formation of Surface Layers and Protective Properties of Hot-Work Structural Steel

机译:碳氮共渗工艺条件对热作结构钢表面层形成和防护性能的影响

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摘要

In this work, the deposition conditions and phase composition of a carbonitrided coating on a complex alloyed hot-work 25Kh3M3NBTsA structural steel are studied using thermodynamic modeling and structural methods. It is shown that the main phases of the surface layers of carbonitrided steel are the solution of nitrogen and carbon in α-Fe, carbonitride, iron nitrides, and chromium and iron carbides. According to the results of thermodynamic analysis, carbide precipitate based on the Fe_3C phase and CrN-based nitride precipitate can be formed. The possible reasons for the absence of the CrN phase in experimental data are indicated. It is shown that the wear rate of carbonitrided coatings is determined by the microhardness of the carbonitrided layer, whereas the fatigue life is related to the crack propagation rate.
机译:在这项工作中,使用热力学模型和结构方法研究了在复杂的合金化热加工25Kh3M3NBTsA结构钢上碳氮共渗涂层的沉积条件和相组成。结果表明,碳氮共渗钢表面层的主要相是氮和碳在α-Fe中的溶液,碳氮化物,氮化铁,铬和碳化铁。根据热力学分析的结果,可以形成基于Fe_3C相的碳化物沉淀物和基于CrN的氮化物沉淀物。指出了实验数据中不存在CrN相的可能原因。结果表明,碳氮共渗涂层的磨损率取决于碳氮共渗层的显微硬度,而疲劳寿命与裂纹扩展速率有关。

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