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Characterization of High Speed Steel Billets Fabricated by Electro-Slag Rapid Remelting Method

机译:电渣快速重熔法制备高速钢坯的表征

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摘要

M2 steels, the typical Co-free high speed steel (HSS) possessing hardness level of 63~65 HRc, are most widely used for cutting tools. On the other hand, Co-containing HSS's, such as M35 and M42, show a higher hardness level of 65~67 HRc and used for high quality cutting tools. In the fabrication of HSS's, it is very important to control cleanliness and eutectic carbide structure of the ingot and it is required to increase productivity at the same time. Production of HSS ingots includes a variety of processes such as casting, electro-slag remelting (ESR), forging, blooming, and wire rod rolling processes. In the present study, electro-slag rapid remelting (ESRR) process, an advanced ESR process combined by continuous casting, was successfully employed to fabricate HSS billets of M2, M35, and M42 steels. Distribution and structure of eutectic carbides of the billets were analysed and cleanliness, hardness, and composition profile of the billets were also evaluated.
机译:M2钢是一种典型的无钴高速钢(HSS),具有63〜65 HRc的硬度水平,被最广泛地用于切削工具。另一方面,含钴的高速钢,例如M35和M42,显示出65〜67 HRc的较高硬度,可用于高质量切削刀具。在HSS的制造中,控制晶锭的清洁度和共晶碳化物结构非常重要,并且需要同时提高生产率。 HSS钢锭的生产包括多种工艺,例如铸造,电渣重熔(ESR),锻造,初轧和线材轧制工艺。在本研究中,电渣快速重熔(ESRR)工艺是一种先进的ESR工艺,采用连续铸造技术,已成功地用于制造M2,M35和M42钢的HSS钢坯。分析了钢坯的共晶碳化物的分布和结构,并评估了钢坯的清洁度,硬度和成分分布。

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