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混合碱土硅氮氧化物玻璃的弹性性能和硬度

Elastic Properties and Hardness of Mixed Alkaline Earth Silicate Oxynitride Glasses.

作者信息

Ali Sharafat

机构信息

Department of Built Environment and Energy Technology, School of Engineering, Linnæus University, SE-351 95 Växjö, Sweden.

出版信息

Materials (Basel). 2022 Jul 19;15(14):5022. doi: 10.3390/ma15145022.

Abstract

The incorporation of nitrogen as a second anion species into oxide glasses offers unique opportunities for modifying glass properties via changes in glass polymerization and structure. In this work, the compositional dependence of elastic properties and the nanoindentation hardness of mixed alkaline-earth silicate oxynitride glasses containing a high amount of nitrogen (>15 at.%, c.a. 35 e/o) were investigated. Three series of silicon oxynitride glass compositions AE−Ca−Si−O−N glasses (where AE = Mg, Sr, and Ba) having varying amounts of modifiers were prepared using a new glass synthesis route, in which a precursor powder of metal hydrides was used. The obtained glasses contained high amounts of N (19 at.%, c.a. 43 e/o) and modifier cations (26 at.%, c.a. 39 e/o). Mg−Ca−Si−O−N glasses had high values of nanohardness (12−16 GPa), along with a reduced elastic modulus (130−153 GPa) and Young’s modulus (127−146 GPa), in comparison with the Sr−Ca- and Ba−Ca-bearing oxynitride glasses. Both the elastic modulus and the nanohardness of AE−Ca−Si−O−N glasses decreased with an increase in the atomic number of the AE element. These property changes followed a linear dependence on the effective cation field strength (ECFS) of the alkaline earth (AE) modifier, according to their valences and ionic radii. No mixed alkaline-earth effect was observed in the current investigation, indicating that the properties were more dictated by the nitrogen content.

摘要

将氮作为第二种阴离子物种引入氧化物玻璃中,为通过改变玻璃聚合和结构来调整玻璃性能提供了独特的机会。在这项工作中,研究了含高氮量(>15原子%,约35质量%)的混合碱土硅酸盐氮氧化物玻璃的弹性性能和纳米压痕硬度与成分的关系。使用一种新的玻璃合成路线制备了三个系列的氮氧化硅玻璃组合物AE−Ca−Si−O−N玻璃(其中AE = Mg、Sr和Ba),这些玻璃含有不同量的改性剂,该合成路线使用金属氢化物的前驱体粉末。所获得的玻璃含有高含量的N(19原子%,约43质量%)和改性剂阳离子(26原子%,约39质量%)。与含Sr−Ca和Ba−Ca的氮氧化物玻璃相比,Mg−Ca−Si−O−N玻璃具有较高的纳米硬度值(12−16 GPa),同时弹性模量(130−153 GPa)和杨氏模量(127−146 GPa)降低。AE−Ca−Si−O−N玻璃的弹性模量和纳米硬度均随AE元素原子序数的增加而降低。根据碱土(AE)改性剂的化合价和离子半径,这些性能变化与有效阳离子场强(ECFS)呈线性关系。在当前研究中未观察到混合碱土效应,表明性能更多地由氮含量决定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d572/9320866/dd2c3bcddfa6/materials-15-05022-g001a.jpg

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