In Situ Transmission Electron Microscopy For Ultrahigh Temperature Mechanical Testing Of Zro2

NANO LETTERS(2020)

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摘要
This work demonstrates a novel approach to ultrahigh-temperature mechanical testing using a combination of in situ nanomechanical testing and localized laser heating. The methodology is applied to characterizing and testing initially nanograined 10 mol % Sc2O3-stabilized ZrO2 up to its melting temperature. The results suggest that the low-temperature strength of nanograined, d < 50 nm, oxides is not influenced by creep. Tensile fracture of ZrO2 bicrystals produce a weak-temperature dependence suggesting that grain boundary energy dominates brittle fracture of grain boundaries even at high homologous temperatures; for example, T = 2050 degrees C or T approximate to 77% T-melt. The maximum temperature for mechanical testing in this work is primarily limited by the instability of the sample, due to evaporation or melting, enabling a host of new opportunities for testing materials in the ultrahigh-temperature regime.
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关键词
In situ, Transmission electron microscopy, Ultrahigh temperature, Nanomechanical testing, Nanocrystalline, Grain boundary
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