铸件内部和表面缺陷的形成机理及其向板材表面缺陷的转化

I.K. I.K. Ibraev
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引用次数: 0

摘要

这项研究旨在阐明在加热、塑性变形和轧制过程中,钢锭皮层区微观宏观结构异质性的形成机制及其向表面缺陷的转化。本文介绍了研究钢锭和成品轧制板宏观和微观结构及化学异质性的方法和结果。在钢锭-板坯-轧制板材的端到端冶金加工阶段,开发了一种金属结构浓度分析比较方法。该技术利用金相方法研究结构,并对非金属夹杂物进行定性分析。研究结果表明,轧制薄板表面的质量主要由铸锭结壳区的物理异质性决定,而轧制薄板的内部缺陷则主要受金属中非金属夹杂物污染的影响。研究提出了铸造皮层区缺陷转化为轧制薄板表面和内部缺陷的新机制。这项研究有助于加深对金属加工过程中缺陷形成和转化的理解,从而制定出提高轧制板材质量的策略。此外,该研究还强调了控制铸锭皮壳区的物理异质性和尽量减少非金属夹杂物污染对获得高质量轧制板材的重要性。
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MECHANISM OF FORMATION OF INTERNAL AND SURFACE DEFECTS IN CASTING AND THEIR TRANSFORMATION INTO SURFACE DEFECTS OF SHEET
This study aimed to elucidate the formation mechanisms of micro-macrostructural heterogeneities in the ingot's cortical zone and their transformation into surface defects during heating, plastic deformation, and rolling processes. The methodology and results of studying the macro-and microstructural and chemical heterogeneities of ingots and finished rolled sheets are presented. A comparative method of structural-concentration analysis of metal at theend-to-end metallurgical processing stage of ingot -slab -rolled sheets was developed. The technique utilizes metallographic methods to study the structure and perform qualitative analysis of non-metallic inclusions. The research findings indicate that the quality of the rolled sheet surface is predominantly determined by the physical heterogeneity of the ingot's crust zone, while the internal defects in thin rolled sheets are largely influenced by the contamination of the metal with non-metallic inclusions. A novel mechanism is proposed for the transformation of defects in the casting cortical zone into surface and internal defects in rolled sheets. This study contributes to a deeper understanding of the formation and transformation of defects during metal processing, enabling the development of strategies for improving the quality of rolled sheets. Additionally, the study highlights the importance of controlling the physical heterogeneity of the ingot's crust zone and minimizing non-metallic inclusion contamination to achieve high-quality rolled sheets.
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CiteScore
1.10
自引率
0.00%
发文量
15
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