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Microcantilever investigation of fracture toughness and subcritical crack growth on the scale of the microstructure in Al 2 O 3

机译:微电子对裂缝韧性和亚临界裂纹生长的调查,在Al 2 O 3中微观结构的规模上

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摘要

Knowledge of the fracture characteristics of individual microstructural features such as grains and grain boundaries is essential for a full understanding of the macroscopic behaviour of ceramics. We have investigated the fracture of single crystal, bicrystal and polycrystalline AlO on the micrometre scale by testing microcantilevers containing notches and artificial flaws introduced at features of interest (e.g. grain boundaries) using focused ion beams (FIB). The specimens were loaded to fracture using a nanoindenter and tests were performed under air, water and silicone oil. The results were influenced significantly by ion implantation at the notch tip, moisture assisted slow crack growth and finite notch tip radius. Methods of avoiding these effects or correcting for them are proposed. It is shown that using these methods, the fracture toughness (K ) and threshold stress intensity for subcritical crack growth (K ) can be measured in individual grains and grain boundaries of typical microstructures.
机译:知识谷物和晶界等单个微观结构特征的裂缝特征对于充分了解陶瓷的宏观行为至关重要。通过使用聚焦离子束(FIB)在感兴趣的缺口(例如,晶界)的特征中,通过测试含有缺口和人工缺陷的微膜和人工缺陷来研究单晶,双晶和多晶ALO的骨折。使用纳米丁烯罐装载标本以裂缝,并在空气,水和硅油下进行试验。在凹口尖端的离子注入,水分辅助缓慢裂纹生长和有限凹口尖端半径的影响受到显着影响。提出了避免这些影响或纠正它们的方法。结果表明,使用这些方法,可以在典型微结构的个体晶粒和晶粒边界中测量亚临界裂纹生长(k)的断裂韧性(k)和阈值应力强度。

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