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Crack-resistant Al2O3–SiO2 glasses

机译:防裂Al2O3-SiO2玻璃

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摘要

Obtaining “hard” and “crack-resistant” glasses have always been of great important in glass science and glass technology. However, in most commercial glasses both properties are not compatible. In this work, colorless and transparent xAl2O3–(100–x)SiO2 glasses (30 ≤ >x ≤ 60) were fabricated by the aerodynamic levitation technique. The elastic moduli and Vickers hardness monotonically increased with an increase in the atomic packing density as the Al2O3 content increased. Although a higher atomic packing density generally enhances crack formation in conventional oxide glasses, the indentation cracking resistance increased by approximately seven times with an increase in atomic packing density in binary Al2O3–SiO2 glasses. In particular, the composition of 60Al2O3•40SiO2 glass, which is identical to that of mullite, has extraordinary high cracking resistance with high elastic moduli and Vickers hardness. The results indicate that there exist aluminosilicate compositions that can produce hard and damage-tolerant glasses.
机译:在玻璃科学和玻璃技术中,获得“坚硬”和“抗裂”的眼镜一直非常重要。但是,在大多数商用眼镜中,这两种特性都不兼容。在这项工作中,通过空气悬浮技术制造了无色透明的xAl2O3–(100–x)SiO2玻璃(30≤> x ≤60)。随着Al 2 O 3含量的增加,弹性模量和维氏硬度随原子堆积密度的增加而单调增加。尽管较高的原子堆积密度通常会提高常规氧化物玻璃的裂纹形成,但随着二元Al2O3-SiO2玻璃中原子堆积密度的增加,耐压痕开裂性提高了约7倍。特别地,与莫来石相同的60Al 2 O 3·40SiO 2玻璃组成具有非常高的抗裂性,高的弹性模量和维氏硬度。结果表明存在可以生产坚硬且耐损伤的玻璃的铝硅酸盐组合物。

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