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首页> 外文期刊>Practical Metallography >Application of Fractional Design of Experiments to the Optimisation the Hardness and Microstructure of Duplex Cast Rolls
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Application of Fractional Design of Experiments to the Optimisation the Hardness and Microstructure of Duplex Cast Rolls

机译:实验的分数设计在优化双相铸轧辊的硬度和组织中的应用

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摘要

In the present paper, the results of a fractional design of experiments (DOE) with 16 experiments for 7 factors and resolution IV are presented. The goal was to identify the active roll manufacturing factors that influence roll barrel hardness after a double tempering treatment, the primary austenite grain size and its volume fraction, and the volume fraction of ledeburite in the outer ring layer of duplex work rolls made of Nihard cast iron. As a primary conclusion, both the total Si percentage and the amount of SiCaMn inoculant added to the ladle were found to have a significant effect on the volume fraction of ledeburite. The statistical analysis also showed that high Si percentages and heavier ring roll layer weights were the significant factors promoting the increase in the size of the gamma grains. High Si contents present in the melt and the addition of SiCaMn as inoculant seem to have a counter effect whereby the volume fraction of stable eutectic gamma increases and the volume fraction of proeutectic gamma decreases, with a positive balance for the sum of these austenites of different origins. Finally, the factors that have an influence on roll barrel hardness are those factors that promote the chill effect, such as low Si content, small amounts of liquid being poured into the mould to build up the outer ring layer, and the use of moulds without insulating sleeves.
机译:在本文中,给出了针对7个因素和分辨率IV的16个实验的分数设计实验(DOE)的结果。目的是确定影响双回火处理后的辊筒硬度,主要奥氏体晶粒尺寸及其体积分数以及由Nihard铸件制成的双工轧辊外圈层中的莱氏体的体积分数的有效辊制造因素铁。作为主要结论,发现添加到钢包中的总Si百分比和SiCaMn孕育剂的数量均对丽晶石的体积分数有重大影响。统计分析还表明,高的Si含量和较重的环轧层重量是促使γ晶粒尺寸增加的重要因素。熔体中存在的高Si含量和添加SiCaMn作为孕育剂似乎具有相反的作用,即稳定的共晶伽马的体积分数增加,而共晶伽马的体积分数减少,这些不同奥氏体的总和具有正平衡起源。最后,影响辊筒硬度的因素是那些促进冷却效果的因素,例如低Si含量,向模具中倒入少量液体以建立外圈层,以及在不使用模具的情况下使用模具。绝缘套。

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