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MECHANICAL ACTIVATION OF TALC IN HIGH-ENERGY-SPEED ROTARY MECHANOACTIVATOR

机译:高能旋转机械致动器中滑石的机械活化

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By the mechanical activation-milling of the material, the size and the structure of its particles are changed and it comes to the increasing of the potential energy of the system as well as to the chemical activity of the material what is the result of an increased free surface and of the concretration of the grate defects, that is of the internal energy of the system. All these changes that are reached, show that new characteristic s of treated materials are got by mechanical activation. Controling the process of the mechanical activation and by purpose directing of the new characteristics of the activated materials, we can have the positive effects and use them in more technologies. Talc is important nonmetallic mineral raw material that is widely used as either the basic raw material, or as filler. This has stimulated if s technological investigation, as well as the investigation of if s physico-chemical characteristics. In this paper are shown experimentaly reached results of the physical-chemical characteristics of the talc during the process of the mechanical activation in high energetic mechanoactivators. In this paper, the optimum conditions of mechanical activation of talc in high-energy-speed rotary mechanoactivator and if s influence mechanical activation on a degree of Fe_2O_3 recovery by hydrometallurgical methods, are presented. The X-ray analysis of the obtained products showed that high quality talc with low content of Fe_2O_3 can be obtained by these physico-chemical processes.
机译:通过对材料进行机械活化研磨,可以改变其颗粒的大小和结构,从而增加系统的势能以及材料的化学活性,这是材料增加的结果自由表面和炉排缺陷的凝结,即系统的内部能量。达到的所有这些变化表明,处理后的材料的新特性是通过机械活化获得的。控制机械活化过程并通过有目的地指导活化材料的新特性,我们可以产生积极的效果并将其用于更多技术中。滑石粉是重要的非金属矿物原料,被广泛用作基础原料或填料。这刺激了if的技术研究以及if的理化特性研究。本文显示了在高能机械活化剂机械活化过程中滑石的物理化学特性的实验性结果。提出了高能转速旋转机械活化剂中滑石粉机械活化的最佳条件,以及对滑石粉对Fe_2O_3湿法冶金回收率的影响。所得产物的X射线分析表明,通过这些物理化学方法可以得到低Fe_2O_3含量的高质量滑石。

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