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A quantitative approach to mechanochernical processes

机译:机械过程的定量方法

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摘要

A complex methodology has been developed in order to quantify the conditions of mechanical treatment in laboratory and commercial ball mills. The experimental determination of the collision frequency and the impact energy has been paralleled by an accurate numerical modelling of the balls and powder dynamics. The obtained results have been further confirmed by a direct inspection of the motion of balls and powder inside a transparent quartz reactor by means of high-speed video recording. The temperature of mechanochemical reactors has been also continuously monitored during the course of mechanical treatments. The methodology has been systematically applied to characterise on absolute basis the kinetic behaviour of a large variety of mechanically-induced structural and chemical transformations. In particular, systematic investigations have been performed on the amorphisation of intermetallic and binary systems, on the formation of extended solid solutions in immiscible systems, on the ignition of combustion-like reactions in metal-metalloid mixtures and on the hydrogen storage in nanocrystalline and amorphous multicomponent metallic alloys. Mechanochemical transformations appeared to be basically ruled by two different mechanisms characterised by simple asymptotic trends and sigmoidal curves respectively. An attempt to rationalise the observed mechanisms on a phenomenological basis has been made. (C) 2004 Kluwer Academic Publishers.
机译:为了量化实验室和商业球磨机中机械处理的条件,已经开发了一种复杂的方法。碰撞频率和冲击能量的实验确定与球和粉末动力学的精确数值建模相平行。通过使用高速视频记录直接检查透明石英反应器内的球和粉末的运动,进一步证实了所获得的结果。在机械处理过程中,还对机械化学反应器的温度进行了连续监测。该方法已被系统地应用于绝对地表征各种机械诱导的结构和化学转化的动力学行为。特别是,已经对金属间和二元体系的非晶化,在不混溶体系中形成扩展的固溶体,在金属-准金属混合物中点燃类似燃烧的反应以及在纳米晶体和非晶态中储氢进行了系统研究多组分金属合金。机械化学转变似乎主要是由两种不同的机制所支配,分别以简单的渐近趋势和S形曲线为特征。已尝试在现象学基础上合理化观察到的机制。 (C)2004 Kluwer学术出版社。

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