First-Eutectic Features of Polar Metals in Double Systems

A. Shimkevich, I. Shimkevich
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引用次数: 1

Abstract

It is known that the dense part of any liquid metal consists of ramified clusters of almost regular tetrahedrons (triangular pyramids with atoms in their vertexes) that are connected into chains by faces. Any metal additive as a second component of liquid alloy can be both beyond these clusters as separated atoms and into them as inherent clusters. The liquid-metal alloy transfers into the second state, at the first eutectic of the solvent. This polymorphic transition of liquid matrix is discovered in the systems, Pb-K and Na-Pb, by molecular-dynamic simulating their microstructure and in experiments on scattering slow neutrons by these alloys of different compositions. In the first system, the obtained results identify both the homogeneous alloy at low concentrations of potassium in liquid lead and the alloy clustering, (Pb4K)n, at potassium concentrations following the eutectic, Pb0.91K0.09. In the second one at the concentrations of lead more than 2%, just the second state is discovered with the clusters, (Na4Pb)n. One can expect the same polymorphic transition in the eutectic, Na0.93Tl0.07, with the micro-inhomogeneity, (Na6Tl)n, and with the melting point of 64 C. This eutectic maintained by the oxygen-free technology and enriched by the isotope, 205Tl, can become the best coolant for fast nuclear reactors due to the depressed chemical activity of sodium and composition stability.
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双体系中极性金属的第一共晶特征
众所周知,任何液态金属的致密部分都是由几乎规则的四面体(顶点有原子的三角形金字塔)的分枝簇组成的,这些四面体通过面连接成链。任何金属添加剂作为液态合金的第二组分,既可以作为分离的原子超越这些簇,也可以作为固有的簇进入它们。液态金属合金在溶剂的第一共晶处转变为第二态。通过分子动力学模拟Pb-K和Na-Pb体系的微观结构,并通过不同成分的合金对慢中子的散射实验,发现了液态基体的多晶转变。在第一个体系中,所获得的结果既确定了液态铅中低钾浓度下的均匀合金,也确定了钾浓度下共晶(Pb0.91K0.09)后的合金团簇(Pb4K)n。在第二种情况下,当铅的浓度超过2%时,只发现第二种状态与团簇(Na4Pb)n。在共晶Na0.93Tl0.07中可以看到相同的多晶转变,具有微不均匀性,(Na6Tl)n,熔点为64℃。这种共晶由无氧技术维持,由同位素205Tl富集,由于钠的化学活性降低和组成稳定性,可以成为快堆的最佳冷却剂。
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