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Damage assessment of oxide fibre reinforced oxide ceramic matrix composites using acoustic emission

机译:基于声发射的氧化物纤维增强氧化物陶瓷基复合材料损伤评估

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摘要

The damage mechanisms of woven mullite fibre (Nextel 720m) reinforced alumina ceramic matrix composites (CMCs) were monitored during tensile tests using acoustic emission (AE) technique. The effects of microstructural characteristics, such as porosity and pore size as well as the nature of interfacial zone between fibre- and matrix on the type of damage were also examined and correlated with the microstructural observations. It is shown that based on the energy level of acoustic events, during the tensile tests, delamination of the fibres from the matrix takes place first then multiple matrix cracks form and finally reinforcement fibres break before the composite's final failure. It is also shown that porosity content of the composite samples influences the acoustic emission response during the tensile loading, as both amplitude and the energy values are higher for the composites with low porosity level and smaller pore diameter.
机译:在拉伸试验中,使用声发射(AE)技术监测了莫来石莫来石纤维(Nextel 720m)增强氧化铝陶瓷基复合材料(CMC)的损伤机理。还检查了微观结构特征(例如孔隙率和孔径)以及纤维与基质之间的界面区域的性质对损伤类型的影响,并将其与微观结构观察结果相关联。结果表明,基于声波事件的能级,在拉伸试验中,纤维从基体上发生分层,然后形成多个基体裂缝,最后在复合材料最终破坏之前断裂增强纤维。还显示了复合材料样品的孔隙率含量会影响拉伸载荷期间的声发射响应,因为低孔隙率水平和较小孔径的复合材料的振幅和能量值都较高。

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