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Influence of microwave heating on the microstructures of iron ore pellets with coal during reduction

机译:微波加热对减少煤中铁矿石颗粒微观结构的影响

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Iron ore oxidised pellets as the burden of blast furnace present many advantages, such as uniform size, high iron grade and high physical strength. A comparison of the iron ore oxidised pellets with coal (out-proportioning) by conventional heating and microwave heating was carried out in this paper. Microstructure transformations during reduction process were investigated by opticalmicroscopy and scanning electron microscope with energy dispersive spectrometry analysis. Micro-hardness of metallic iron phase formed in the reduction was tested with digital microhardness tester. The influences of microwave heating on reduction degree, morphology, iron phase and gangues were investigated, respectively. The results show that reduction time can be greatly shortened by microwave heating even at lower temperatures. The fine cracks generated, as the pellets were heated by microwave, were irradiated due to the selectivity of microwave heating. Densification of the metallic iron phase and the separation of the iron and gangues were both found to be enhanced by microwave heating.
机译:铁矿石被氧化颗粒作为高炉负担具有许多优点,如均匀的尺寸,高铁等级和高的物理强度。本文采用常规加热和微波加热将铁矿石氧化颗粒与煤(输出)进行比较。通过光学仪和扫描电子显微镜研究了还原过程中的微观结构变换,具有能量分散的光谱分析。用数字微硬度测试仪测试在还原中形成的金属铁相的微硬度。研究了微波加热对还原程度,形态,铁相和牙龈的影响。结果表明,即使在较低的温度下也可以通过微波加热大大缩短还原时间。产生的细裂纹,因为微波加热粒料,由于微波加热的选择性而被照射。通过微波加热,发现金属铁相的致密化和铁和牙龈的分离均得到增强。

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