Crystal Structure Behavior of Vanadium-Titanium Magnetite (VTM) Ore by Planetary Ball Mill

Yosep Han, Seongmin Kim, Minuk Jung, Hoseok Jeon
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Abstract

In this study, mechanical grinding using a planetary ball mill was performed under various conditions to evaluate its effect on the crystal structure of vanadium titanium magnetite (VTM) ore from the Kwain Mine in South Korea. The crystal structure of the activated product was also evaluated. Magnetite and ilmenite were identified as the main types of VTM ore used in the Kwain Mine, and the main types of gangue minerals were iron-based silicate minerals. According to the mechanical activation results, the crystallinity and crystal size decreased as the size of the grinding media (balls) decreased, and the amorphization of the sample/ball filling was significant as the amount of the sample was reduced. In addition, as the grinding speed and time increased, the crystal structure significantly changed, proving that these two parameters had a greater effect on the crystal structure than the ball size and sample/ball filling ratio.
行星球磨机对钒钛磁铁矿(VTM)矿石晶体结构行为的研究
采用行星球磨机对韩国kain矿钒钛磁铁矿(VTM)进行了不同条件下的机械磨矿,考察了机械磨矿对VTM矿石晶体结构的影响。并对活化产物的晶体结构进行了评价。确定了Kwain矿VTM矿石的主要类型为磁铁矿和钛铁矿,脉石矿物主要类型为铁基硅酸盐矿物。机械活化结果表明,随着研磨介质(球)粒度的减小,结晶度和晶粒尺寸减小;随着试样用量的减少,试样/球的非晶化现象明显。此外,随着磨矿速度和磨矿时间的增加,晶体结构发生了明显的变化,证明这两个参数对晶体结构的影响大于球粒度和样品/球填充比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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