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Effect of Micro-particles in Iron Ore on the Granule Growth and Strength

机译:铁矿石中的微粒对颗粒生长和强度的影响

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Pelletization tests were conducted using pulverized iron ore to record changes in pellet strength by changing the volume of micro-particles and ore types. The strength of pellets when completely dried can be explained by the volume of micro-particles in ore, and the greater the volume of micro-particles, the higher the strength of pellets. The rate of increase in pellet strength by micro-particles when completely dried varies depending on the ore type of micro-particles and the strength increases in the order of pisolite, Marramamba, and hematite. Regarding the generation of pellet strength during the moisture drying process, there are two different mechanisms at work at the early stage and the last stage before complete dryness. The rise in strength at the early stage of drying is considered attributable to the increase in liquid viscosity due to the condensation of micro-particles and APD in the liquid, and the increase in strength just before complete dryness is considered attributable to the formation of solid bridges caused by the movement and rearrangement of micro-particles.
机译:使用粉状铁矿石进行制粒测试,以通过改变微粒的体积和矿石类型来记录颗粒强度的变化。当完全干燥时,颗粒的强度可以用矿石中的微粒体积来解释,并且微粒的体积越大,颗粒的强度就越高。当完全干燥时,由微粒增加的丸粒强度的速率根据微粒的矿石类型而变化,并且强度以透闪石,马拉曼巴和赤铁矿的顺序增加。关于在水分干燥过程中颗粒强度的产生,在完全干燥之前的早期和最后阶段有两种不同的作用机理。认为干燥初期的强度上升是由于微粒和APD在液体中的凝结引起的液体粘度的上升,完全干燥之前的强度上升被认为是固体的形成。微粒的运动和重排造成的桥梁。

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