硅酸铝
三元运算
热力学
材料科学
三元数制
玻璃化转变
溶解
矿物学
成对比较
化学
物理化学
数学
物理
复合材料
统计
有机化学
计算机科学
程序设计语言
聚合物
催化作用
作者
Yinan Lin,Seong H. Kim,Nicholas J. Smith,John C. Mauro
摘要
Abstract The mixed modifier effect (MME) is one of the most challenging puzzles in the field of oxide glasses, as there exists no universal quantitative theoretical model for accurately describing and predicting the nonlinear deviation of property values. In this paper, pairwise and ternary interactions are examined experimentally to understand the MME in a series of aluminosilicate glasses. By keeping the glass network former concentration constant and adjusting the molar ratios of three network modifiers (Na 2 O, K 2 O, and CaO), the MMEs in glass transition temperature ( T g ), Vickers hardness ( H v ), and activation energy ( E a ) for aqueous dissolution for each modifier cation are investigated. We examine whether a pairwise interaction model is sufficient, or if ternary interactions also need to be included to predict the MME in these aluminosilicate glass systems. This work reveals that the pairwise model can be used to predict the MME for T g in complex multiple‐modifier glass systems using only two‐body interaction factors. However, ternary mixed‐modifier interactions are present in other properties such as H v and E a.
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