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High-entropy R2O3-Y2O3-TiO2-ZrO2-Al2O3 glasses with ultrahigh hardness Youngs modulus and indentation fracture toughness

机译:高熵R2O3-Y2O3-TiO2-ZrO2-Al2O3眼镜具有超高硬度杨氏模量和压痕断裂韧性

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摘要

Glasses with high hardness, high Young's modulus, and high fracture toughness become crucial materials which are urgently needed in the protective covers for various electronic displays. Here, a paradigm is presented that the conceptual design of high-entropy materials is adaptable to high performance oxide glasses. We designed the multi-component glass compositions of 18.77R2O3-4.83Y2O3-28.22TiO2-8.75ZrO2-39.43Al2O3 (R = La, Sm, Gd) and elaborated successfully the glassy samples through a containerless solidification process. The as-prepared samples demonstrated the outstanding mechanical and optical properties. The measured hardness, Young's modulus, and indentation fracture toughness of the high-entropy (R = Gd) glass are 12.58 GPa, 177.9 GPa, and 1.52 MPa·m0.5, respectively, in which the hardness and Young's modulus exhibit the highest value among the reported oxide glasses. Structural analysis revealed that the excellent mechanical properties are attributed to the large dissociation energies and the high field strength of Al2O3, TiO2, and ZrO2 and the complex interaction between atoms caused by high entropy.
机译:具有高硬度,高杨氏模量和高断裂韧性的眼镜成为了各种电子显示器的保护罩中迫切需要的关键材料。这里提出了一种范式,即高熵材料的概念设计适用于高性能氧化物玻璃。我们设计了18.77〜28.22-430203-28.22-43Y2O3(R = LA,SM,GD)的多组分玻璃组合物,并通过容器凝固过程成功阐述了玻璃样品。制备的样品显示出突出的机械和光学性质。高熵(R = Gd)玻璃的测量硬度,杨氏模量和压痕断裂韧性分别为12.58GPa,177.9gPa和1.52MPa·M0.5,其中硬度和杨氏模量表现出最高值在报告的氧化物玻璃中。结构分析表明,优异的机械性能归因于大的解离能和Al 2 O 3,TiO 2和ZrO2的高场强以及由高熵引起的原子之间的复杂相互作用。

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