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EFFECT OF DIFFERENT COOLING SYSTEM ON THE SOLIDIFICATION OF THE SINTERS

机译:不同冷却系统对烧结凝固的影响

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摘要

The research on the formation of Silico-Ferrite of Calcium and Aluminium (SFCA) in the process of cooling and solidification is rarely reported. The crystallization process was observed by using scanning electron microscopy (SEM) and optical microscope in this paper. The effect of different cooling system on the microstructure and phase composition of the sinters was investigated to obtain the appropriate cooling rate to improve the metallurgical properties of sinters. The experimental results show that the crystallization of calcium ferrite is getting better when the cooling rate is decreased from water quenching to cooling in the air. There are a large number of hematite phases with interconnected crystal structure in the sample cooled in the air. In the case of the compressive strength, it was determined by the mineral composition and pore structure, liigher SFCA and hematite contents in sinter cooling in the air lead to a higher strength. Glass phase in the water quenching sinter was the major reason for the lowest strength. High porosity contributes to a decrease in compressive strength for the sinter cooling in the furnace. Therefore the air cooling was the appropriate cooling rate to achieve high quality sinter under this experimental condition.
机译:罕见地报道了对冷却和凝固过程中钙和铝(SFCA)的硅铁氧体的形成的研究很少。通过使用扫描电子显微镜(SEM)和光学显微镜在本文中观察结晶过程。研究了不同冷却系统对烧结组织和相组成的影响,得到适当的冷却速率以改善烧结冶金的冶金特性。实验结果表明,当冷却速率从水猝灭降低到空气中冷却时,钙铁氧体的结晶越来越好。在空气中冷却的样品中有大量的赤铁矿相位,在样品中冷却。在抗压强度的情况下,通过矿物质组合物和孔结构测定,在空气中的烧结液中的血液SFCA和赤铁矿含量导致更高的强度。水淬火烧结中的玻璃相是最低强度的主要原因。高孔隙率有助于降低炉中烧结炉的抗压强度。因此,空气冷却是在该实验条件下实现高质量烧结的适当冷却速率。

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