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Influence of Heat Treatment on Content of the Carbide Phases in the Microstructure of High-Speed Steel

机译:热处理对高速钢组织中碳化物相含量的影响

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This article presents the results of investigations of the effect of heat treatment temperature on the content of the carbide phase of HS3-1-2 and HS6-5-2 low-alloy high-speed steel. Analysis of the phase composition of carbides is carried out using the diffraction method. It is determined that with increasing austenitising temperature, the intensification of dissolution of M6C carbide increases. As a result, an increase in the grain size of the austenite and the amount of retained austenite causes a significant reduction in the hardness of hardened steel HS3-1-2 to be observed. The results of diffraction investigations showed that M7C3 carbides containing mainly Cr and Fe carbides and M6C carbides containing mainly Mo and W carbides are dissolved during austenitisation. During austenitisation of HS3-1-2 steel, the silicon is transferred from the matrix to carbides, thus replacing carbide-forming elements. An increase in a degree of tempering leads to intensification of carbide separation and this process reduce the grindability of tested steels.
机译:本文介绍了研究热处理温度对HS3-1-2和HS6-5-2低合金高速钢碳化物相含量的影响的研究结果。使用衍射法对碳化物的相组成进行分析。可以确定的是,随着奥氏体化温度的升高,M6C碳化物的溶解强度增加。结果,奥氏体的晶粒尺寸的增加和残余奥氏体的量导致观察到的硬化钢HS3-1-2的硬度显着降低。衍射研究的结果表明,在奥氏体化过程中,主要含有Cr和Fe的M7C3碳化物和主要含有Mo和W的M6C碳化物被溶解。在HS3-1-2钢的奥氏体化过程中,硅从基体转移到碳化物,从而替代了形成碳化物的元素。回火度的增加导致碳化物分离的加剧,并且该过程降低了被测试钢的可磨性。

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