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EQUILIBRIUM PROPERTIES OF SOME SILICATE MATERIALS: A THEORETICAL STUDY (MAGNESIUM OXIDE, ALUMINUM OXIDE, SILICON DIOXIDE).

机译:某些硅酸盐材料的平衡性能:一项理论研究(氧化镁,氧化铝,二氧化硅)。

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摘要

Equilibrium properties of the MgO-Al₂O₃-SiO₂ (MAS) system are modeled using techniques from statistical and quantum mechanics. The fundamental structural units in this model are the closed shell ions: Mg²⁺, Al³⁺, Si⁴⁺, and O²⁻. The equilibrium properties of the MAS system are determined by the interactions among these ions and by the environment (i.e. temperature and pressure). The interactions are modeled using coulombic, dispersion, and repulsive forces. Two parameters appearing in the repulsive terms for each cation-oxygen interaction are fitted from properties of quartz, corundum, and periclase crystals. The effects of the environment on the liquid and solid compositions found in this system are calculated using a Monte Carlo technique involving the generation of a Markov chain of configurations; each configuration being a "snapshot" of the particles in the liquid or solid material being studied. The properties of the material are derived from averaging appropriate quantities over all the configurations. Enthalpies of formation, heat capacities, and volumes of seven compositions in the MAS system have been calculated using this method. All are within three percent of the corresponding experimental values. Radial distribution functions for these runs show the competition among the cations for the common anion, oxygen, under charge and mass balance constraints. The electronic structure of several molecular clusters in the MAS system are examined using ab initio linear combinations of atomic orbitals (LCAO) techniques. The assumptions used in LCAO calculations are examined and a small, balanced basis set for the MAS system is presented. The Mg-, Al-, and Si-O interactions are all found to be highly ionic using this basic set. Using a first principles technique, the two body effective pair potentials assumed for the Monte Carlo calculations were shown to be physically reasonable.
机译:MgO-Al 2 O 3 -SiO 2(MAS)系统的平衡特性是使用统计和量子力学的技术建模的。该模型的基本结构单元是封闭的壳离子:Mg 2+,Al 3+,Si 3+和O 2+。 MAS系统的平衡特性由这些离子之间的相互作用以及环境(即温度和压力)决定。使用库仑力,分散力和排斥力对相互作用进行建模。从石英,刚玉和周长石晶体的特性中,拟合出了排斥性项中出现的每个阳离子-氧相互作用的两个参数。环境对系统中液体和固体成分的影响是使用蒙特卡洛技术计算的,其中涉及到马尔可夫构型链的产生。每种配置都是所研究的液体或固体材料中颗粒的“快照”。材料的属性是通过在所有配置中平均适当数量得出的。使用这种方法已经计算出了MAS系统中7种成分的形成焓,热容和体积。所有这些都在相应实验值的百分之三以内。这些运行的径向分布函数显示了在电荷和质量平衡约束下,阳离子之间对常见阴离子,氧的竞争。使用原子轨道的从头开始线性组合(LCAO)技术检查了MAS系统中几个分子簇的电子结构。检查了LCAO计算中使用的假设,并为MAS系统提供了一个小的平衡基础集。使用该基本组,发现Mg-,Al-和Si-O的相互作用都是高度离子化的。使用第一原理技术,假定用于蒙特卡洛计算的两个身体有效对电位在物理上是合理的。

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    HOSTETLER CHARLES JAMES.;

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  • 年度 1982
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  • 原文格式 PDF
  • 正文语种 en
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