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Determination of non-metallic inclusions in a continuous casting slab of ultra-low carbon interstitial free steel by applying of metallographic method electrolytic method and RTO technique

机译:金相法电解法和RT​​O法测定超低碳无间隙钢连续铸坯中的非金属夹杂物

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摘要

Metallographic, electrolytic method and RTO(room temperature organic) technique were applied in the present study to more accurately determine non-metallic inclusion in a ultra-low carbon interstitial free(IF) steel and further to confirm their origination in a Compact Strip Production Process (CSP Process) continuous casting (CC) slab. Results show that inclusions detected by metallographic method usually appear relative smaller size and are mainly Al2O3 based or TiN based in composition, whereas those extracted by electrolytic method usually have larger size and are much more calcium-silicate based in composition. In addition, inner structures of extracted inclusions were detected by applying of RTO technique. The large size calcium-silicate based inclusions are confirmed high possibilities originating from mold flux and/or tundish flux entrapment, which are less affected by the liquid steel composition; while the smaller ones are generally endogenous inclusion precipitating during the refining or solidification process that strongly depending on the liquid steel composition and temperature.
机译:在本研究中,采用了金相,电解方法和RTO(室温有机)技术,可以更准确地确定超低碳无间隙(IF)钢中的非金属夹杂物,并进一步确认其在紧凑带钢生产工艺中的起源。 (CSP工艺)连续铸造(CC)板坯。结果表明,金相法检测到的夹杂物通常尺寸较小,主要成分为Al2O3基或TiN基,而电解法提取的夹杂物通常较大,成分多为硅酸钙。另外,采用RTO技术检测了提取夹杂物的内部结构。证实了基于硅酸钙的大尺寸夹杂物很有可能是由铸模助焊剂和/或中间包助焊剂的夹带引起的,它们受钢液成分的影响较小;而较小的那些通常是在精炼或凝固过程中内生夹杂物沉淀的,而这强烈地取决于钢水的成分和温度。

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