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首页> 外文期刊>Journal of Materials Synthesis and Processing >Self-sustaining metal-sulfur reactions induced by ball milling
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Self-sustaining metal-sulfur reactions induced by ball milling

机译:球磨引发的自持性金属硫反应

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Combination reactions between chalcogen elements and metals are probably the most widely studied mechanically induced self-sustaining reactions (MSR). A series of five papers by Chakurov and his collaborators in the 1980s [1, 6-9] represents the first results on MSR. More recently, we performed detailed investigations on the Sn-Zn-S system [10, 12]. Those efforts resulted in hundreds of ignition time data, which exhibit systematic variation as a function of composition and milling conditions. It was shown that the degree of mechanical activation can be characterized by the mechanical dose received by the powder charge. Whether a reaction can become self-sustaining or not depends primarily on its thermodynamic properties, such as the adiabatic temperature. The ignition time, however, is more sensitive to the hardness of the reactants. The effect of inert additives is discussed, again contrasting thermodynamic and kinetic factors. The mutual suppression of ignition in mixtures of binary systems that show MSR by themselves is described.
机译:硫族元素与金属之间的组合反应可能是研究最广泛的机械诱导的自持反应(MSR)。 Chakurov和他的合作者在1980年代发表的一系列五篇论文[1,6-9]代表了MSR的第一个结果。最近,我们对Sn-Zn-S系统进行了详细研究[10,12]。这些努力产生了数百个点火时间数据,这些数据表现出随成分和研磨条件而变化的系统性变化。结果表明,机械活化的程度可以由粉末装料所接受的机械剂量来表征。反应是否可以自我维持,主要取决于其热力学性质,例如绝热温度。然而,点火时间对反应物的硬度更为敏感。讨论了惰性添加剂的作用,再次对比了热力学和动力学因素。描述了相互抑制点火的二元体系混合物本身显示出MSR的特征。

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