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Influence of Crystallization Behavior of Gas Quenching Blast Furnace Slag on the Preparation of Amorphous Slag Beads

机译:气体淬火高炉炉渣结晶行为对非晶矿渣珠制备的影响

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摘要

Slag beads with different crystal content could be obtained through the gas quenching blast furnace slag (BFS) process. In order to increase the additional value of the slag beads as much as possible, it was necessary to restrain the crystallization of the slag beads as much as possible. In this paper, the mineral types and crystallization temperatures of BFS with different basicities and cooling rates were studied by using Factsage thermodynamic software, XRD, and differential scanning calorimeter (DSC) experiments, which obtained the gas quenching temperature and the cooling rate needed to restrain crystallization behavior in the gas quenching process; The crystallization mechanism was studied by calculating crystallization activation energy (Ec) using the DSC experiment, at the same time, the thermodynamic results were verified. The proper basicity and cooling rate of BFS were found to be conducive to the preparation of amorphous slag beads. The results showed that the initial crystallization temperature decreased with decreasing the basicity and increasing the cooling rate, which could increase the amorphous content of slag beads in the gas quenching process. The crystallization activation energy (Ec) increased with decreasing basicity, which increased the crystallization barrier.
机译:可以通过气体淬火高炉渣(BFS)工艺获得具有不同晶体含量的炉渣珠子。为了尽可能地增加炉渣珠的额外值,有必要尽可能地抑制炉渣珠的结晶。在本文中,通过使用事实上的热力学软件,XRD和差示扫描量热计(DSC)实验研究了具有不同碱性和冷却速率的BFS的矿物类型和结晶温度,从而获得了气体淬火温度和抑制所需的冷却速度气体淬火过程中的结晶行为;通过使用DSC实验计算结晶活化能量(EC)来研究结晶机理,同时验证了热力学结果。发现BFS的适当碱性和冷却速率有利于制备无定形炉渣珠子。结果表明,初始结晶温度随着降低的碱度和增加冷却速率而降低,这可以增加气体淬火过程中的炉渣珠的无定形含量。结晶活化能量(EC)随着碱度的降低而增加,增加了结晶屏障。

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