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Fracture behaviour of brittle (glass) matrix composites

机译:脆性(玻璃)基复合材料的断裂行为

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摘要

A number of examples exist that indicate the potential for increasing the toughness of brittle matrices by dispersing different reinforcements. For further development of these advanced materials the actual material response during mechanical loading under presence of flaws appears to be important. Theoretical and experimental knowledge acquired on different kinds of brittle matrix composites is summarised in the paper. These include glass matrix composites with metallic particles, alumina platelets, continuous SiC (Nicalon®) fibres, and both chopped fibres and ZrO_2 particles (hybrid composites). The composites were tested in as-received state but also after different forms of thermomechanical loading, e.g. thermal shock, thermal cycling in air, which were investigated according to the envisaged composites application. Chevron notch technique was mainly used for fracture toughness evaluation. Microstructural damage is explained based on identified fracture micromechanisms.
机译:存在许多示例,这些示例表明了通过分散不同的增强物来增加脆性基体韧性的潜力。为了进一步开发这些先进的材料,在存在缺陷的情况下机械加载过程中的实际材料响应似乎很重要。本文总结了在不同类型的脆性基体复合材料上获得的理论和实验知识。这些包括具有金属颗粒,氧化铝片,连续SiC(Nicalon®)纤维以及短切纤维和ZrO_2颗粒的玻璃基复合材料(混合复合材料)。在接收状态下也对复合材料进行了测试,但是也经过了不同形式的热机械加载,例如根据设想的复合材料应用对热冲击,空气中的热循环进行了研究。雪佛龙缺口技术主要用于断裂韧性评估。基于确定的断裂微机制解释了微结构损伤。

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