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Mechanochemical reaction at the interface between a metal plate and oxide powders

机译:在金属板和氧化物粉末之间的界面处的机械化学反应

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A new geometry is proposed and explored for the investigation of mechanochemical reactions. Typical displacement reactions between an oxide (PbO, CuO, and WO3) and Al as the reducing metal are studied, but instead of starting with a mixture of two powder reactants, Al is introduced in the form of a plate attached to the inside wall of the milling vial and only the oxide is milled in powder form. Consequently, the reaction takes place at the surface of the aluminium plate, where the microstructure can be investigated easily using SEM. The phase composition is followed by XRD. Of the three oxide components, the reaction is the fastest with PbO due to the intense ductile mixing at the interface. The current configuration can be utilized for the investigation of any mechanochemical or mechanical alloying process where at least one of the components can be prepared in the form of a ductile plate that is capable of withstanding the multiple impacts from the milling balls. (C) 2004 Kluwer Academic Publishers.
机译:提出了一种新的几何构型,并用于研究机械化学反应。研究了氧化物(PbO,CuO和WO3)与以铝作为还原金属之间的典型置换反应,但不是以两种粉末反应物的混合物开始,而是以板形式引入铝,该板附着在金属的内壁上。研磨瓶,只有氧化物以粉末形式研磨。因此,该反应发生在铝板的表面,可以使用SEM轻松研究其微观结构。相组成之后是XRD。在这三种氧化物组分中,由于界面处的剧烈延展性混合,与PbO的反应最快。当前的构造可用于研究任何机械化学或机械合金化工艺,其中至少一种组分可以延性板的形式制备,该延性板能够承受来自铣削球的多种冲击。 (C)2004 Kluwer学术出版社。

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