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首页> 外文期刊>Journal of the European Ceramic Society >Creep damage resistance of ceramic-matrix composites
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Creep damage resistance of ceramic-matrix composites

机译:陶瓷基复合材料的耐蠕变性

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摘要

The tensile creep and creep fracture properties in air at 1300 deg C are documented for two ceramic fibre-reinforced ceramic-matrix composites (CFCMCs). These recently developed materials were produced with woven bundles of Hi-Nicalon~(TM) fibres reinforcing either Al_2O_3 or enhanced SiBC matrices, allowing data comparisons to be made with similar CFCMCs having different fibre-matrix combinations. The results confirm that the longitudinal fibres govern the rates of strain accumulation and crack growth, but the fracture characteristics are determined by fibre failure caused by oxygen penetration as matrix cracks develop. The analysis then suggests that carbon fibre-reinforced doloma-matrix composites could offer a combination of creep-resistant fibres and creep damage-resistant matrices suitable for long-term load-bearing service in high-temperature oxidizing environments.
机译:记录了两种陶瓷纤维增强陶瓷基复合材料(CFCMC)在1300℃空气中的拉伸蠕变和蠕变断裂特性。这些最近开发的材料是用增强Al_2O_3或增强的SiBC矩阵的Hi-NicalonTM纤维编织束生产的,从而可以对具有不同纤维基质组合的类似CFCMC进行数据比较。结果证实,纵向纤维决定了应变积累和裂纹扩展的速率,但是断裂特性是由随着基质裂纹发展而由氧气渗透引起的纤维破坏所决定的。然后分析表明,碳纤维增强的白云母基复合材料可提供抗蠕变纤维和抗蠕变破坏基质的组合,适用于高温氧化环境中的长期承重服务。

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