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An Overview of the Structure and Properties of Silicon-Based Oxynitride Glasses

机译:硅基氮氧化物玻璃的结构和性能概述

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摘要

The silicon oxynitride glasses take advantage of nitrogen bonding to attain high elastic modulus, increased softening temperatures and viscosities, greater slow crack growth resistance, and modest gains in fracture resistance. Of the oxynitride glasses, the Si-Y-Al-based oxynitride glasses have been most extensively studied and a degree of success has been achieved in understanding how changes in glass composition affect structural parameters and their relationship with properties. More recent studies have focused on the Si-RE-Me oxynitride glasses, where Me is primarily Al or Mg and rare earth (RE) includes most of the lanthanide series elements. These glasses possess a range of elastic, thermal, mechanical, and optical properties, which can be correlated with the strength of the RE bond in terms of the cationic field strength. However, such correlations require knowledge of not only the RE valence state but also its coordination with the anions. Herein, the current state-of-the-art understanding of the properties and structural parameters of oxynitride glasses and their interrelationships are reviewed.
机译:氮氧化硅玻璃利用氮键结合来获得高弹性模量,提高的软化温度和粘度,更大的抗缓慢裂纹扩展性以及适度的抗断裂性。在氧氮化物玻璃中,已经对Si-Y-Al基的氧氮化物玻璃进行了最广泛的研究,并且在理解玻璃成分的变化如何影响结构参数及其与性能的关系方面已经取得了一定程度的成功。最近的研究集中在Si-RE-Me氮氧化物玻璃上,其中Me主要是Al或Mg,而稀土(RE)包括大多数镧系元素。这些玻璃具有一定范围的弹性,热,机械和光学性能,就阳离子电场强度而言,它们可以与RE键的强度相关。但是,这样的相关不仅需要RE价态的知识,还需要其与阴离子的配位关系。在此,回顾了对氧氮化物玻璃的性质和结构参数及其相互关系的最新了解。

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  • 来源
    《International journal of applied glass science》 |2011年第1期|p.63-83|共21页
  • 作者单位

    Oak Ridge National Laboratory, Materials Science and Technology Division, Oak Ridge, Tennessee 37831;

    Materials and Surface Science Institute, University of Limerick, Limerick, Ireland;

    Materials and Surface Science Institute, University of Limerick, Limerick, Ireland;

    Institute for Ceramics, University of Karlsruhe, Karlsruhe D-76131, Germany;

    Oak Ridge National Laboratory, Materials Science and Technology Division, Oak Ridge, Tennessee 37831;

    Institute for Ceramics, University of Karlsruhe, Karlsruhe D-76131, Germany;

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