Effect of Consumable Electrode Metallurgical Quality on Cleanliness of Bearing Steel G20CrNi2Mo ESR Ingot
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Effect of Consumable Electrode Metallurgical Quality on Cleanliness of Bearing Steel G20CrNi2Mo ESR Ingot
Special SteelVol. 39, Issue 6, Pages: 6-10(2018)
作者机构:
1. 北京科技大学钢铁冶金新技术国家重点实验室,北京,100083
2. 西宁特殊钢股份有限公司,西宁,810005
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DOI:
CLC:
Received:20 May 2018,
Online First:25 May 2022,
Published:25 May 2018
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李世健, 成国光, 苗志奇, et al. Effect of Consumable Electrode Metallurgical Quality on Cleanliness of Bearing Steel G20CrNi2Mo ESR Ingot[J]. Special Steel, 2018, 39(6): 6-10.
DOI:
李世健, 成国光, 苗志奇, et al. Effect of Consumable Electrode Metallurgical Quality on Cleanliness of Bearing Steel G20CrNi2Mo ESR Ingot[J]. Special Steel, 2018, 39(6): 6-10.DOI:
Effect of Consumable Electrode Metallurgical Quality on Cleanliness of Bearing Steel G20CrNi2Mo ESR Ingot
The effect of consumable electrode on ESR ingot cleanliness was investigated during electroslag remelting (ESR) of G20CrNi2Mo bearing steel. The results show that the ingot cleanliness is much correlated with that of electrode. The ingot oxygen content presents a rising trend with increasing electrode oxygen content. The SEM-EDS analysis reveals that the number density of low-melting-point CaO-MgO-Al
2
O
3
inclusions in high oxygen-containing electrode is much larger than that in low oxygen-containing electrode. The low interfacial energy between low-melting-point inclusions and steel significantly limits the efficiency of inclusions removal
thus resulting in relatively high ingot oxygen content. With increasing carbon content before EAF tapping
the number of ingots less than 0.002 0% oxygen occupies total more than 90%.