Influence of silicon and tramp elements on the high-temperature oxidation of steel in direct casting and rolling processes

IF 1.6 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
Georg Gaiser, Peter Presoly, Christian Bernhard, Kerstin Baumgartner, Simon Grosseiber
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引用次数: 0

Abstract

Oxidation processes are unavoidable in continuous casting and further hot processing of steel. A deeper understanding of the occurring phenomena such as intergranular oxidation and liquid metal infiltration of grain boundaries is essential to continuously improve the quality of the products. In this study, oxidation experiments were performed with simultaneous thermal analysis for two thin slab casting and rolling applications under near-process conditions up to the point prior to the first reduction stage. The experiments were performed for two low-carbon steels contaminated with undesirable tramp elements (Cu, Sn, …). In addition, the two steels contain Silicon at different levels. The results show that for the "Endless Strip Production" process (ESP), intergranular oxidation is significantly less pronounced compared to a "Thin Slab Casting and Rolling process" with a gas-fired tunnel furnace (TSCR TF). Due to the short process time at high temperatures in the ESP process, hardly any liquid metal infiltration by copper appears. In low silicon steel, intergranular oxidation results from various oxides, and liquid metal infiltration appears simultaneously in the TSCR TF process. Furthermore, the yield loss from oxidation is significantly higher in the TSCR TF process. The change from a natural gas combustion atmosphere to a hydrogen combustion atmosphere further increases the oxidation rate and results in a higher mass loss.

硅和杂散元素对直接铸造和轧制过程中钢的高温氧化的影响
在钢的连铸和进一步热加工过程中,氧化过程是不可避免的。深入了解晶间氧化和液态金属渗入晶界等现象对持续提高产品质量至关重要。在这项研究中,我们对两种薄板坯铸造和轧制应用进行了氧化实验,并同时进行了热分析,实验条件一直持续到第一还原阶段之前。实验针对两种受到不良杂质元素(铜、锡......)污染的低碳钢。此外,这两种钢还含有不同含量的硅。结果表明,与使用燃气隧道炉的 "薄板铸造和轧制工艺"(TSCR TF)相比,"无端带材生产 "工艺(ESP)的晶间氧化明显较少。由于 ESP 工艺在高温下的加工时间较短,几乎不会出现铜液态金属渗入的现象。在低硅钢中,各种氧化物会导致晶间氧化,同时在 TSCR TF 工艺中会出现液态金属渗入。此外,在 TSCR TF 工艺中,氧化造成的屈服损耗明显更高。从天然气燃烧气氛改为氢气燃烧气氛会进一步提高氧化率,导致质量损失增加。
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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来源期刊
Isij International
Isij International 工程技术-冶金工程
CiteScore
3.40
自引率
16.70%
发文量
268
审稿时长
2.6 months
期刊介绍: The journal provides an international medium for the publication of fundamental and technological aspects of the properties, structure, characterization and modeling, processing, fabrication, and environmental issues of iron and steel, along with related engineering materials.
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