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Microstructure evolution and mechanical properties of drop-tube processed, rapidly solidified grey cast iron

机译:滴管加工快速凝固的灰口铸铁的组织演变和力学性能

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The microstructure, phase composition and microhardness of rapidly solidified grey cast iron BS1452 Grade 250 are compared against the conventionally solidified alloy. Powder samples were prepared using containerless processing via the drop-tube technique. The rapidly cooled droplets were collected and sieved into size range from ≥ 850 μm to ≤ 53 μm diameters corresponding to estimated rates of 200-23,000 K s~(-1). Microstructure evaluations were made by optical and scanning electron microscopy, while XRD was used for identification and analysis of evolved phases. The control sample showed extensive graphite flake formation which was absent in virtually all the droplets samples. With decreasing particle size (increasing cooling rate) we observed an increase in the proportion of Fe_3C present and the retention of γ-Fe in preference to α-Fe, with the proportion of retained austenite increasing with increasing cooling rate. At the highest cooling rates utilised a Martensitic or acicular ferrite structure was observed. Cooling rates of 200 K s~(-1) resulted in a doubling of the measured microhardness relative to the as-received (slowly cooled) material. Cooling at the highest rates achieved resulted in a further doubling of the measured microhardness.
机译:将快速凝固的BS1452 250级灰口铸铁的组织,相组成和显微硬度与常规凝固合金进行了比较。粉末样品是通过滴管技术使用无容器处理方法制备的。收集快速冷却的液滴并将其筛分成直径范围从≥850μm到≤53μm,对应于200-23,000 K s〜(-1)的估计速率。通过光学和扫描电子显微镜对显微组织进行评估,而XRD用于鉴定和分析析出相。对照样品显示出大量的石墨薄片形成,几乎所有的液滴样品中都没有。随着粒径的减小(冷却速率的增加),我们观察到存在的Fe_3C的比例增加,并且γ-Fe的保留优先于α-Fe,随着冷却速率的增加,残余奥氏体的比例也增加。在最高冷却速率下,观察到马氏体或针状铁素体结构。 200 K s〜(-1)的冷却速率使所测得的显微硬度相对于所接受(缓慢冷却)的材料增加了一倍。以最高速度冷却后,测得的显微硬度进一步加倍。

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