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Identification of a Critical Time with Acoustic Emission Monitoring during Static Fatigue Tests on Ceramic Matrix Composites: Towards Lifetime Prediction ?

机译:在陶瓷基复合材料的静态疲劳测试过程中,通过声发射监测识别临界时间:寿命预测?

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Non-oxide fiber-reinforced ceramic-matrix composites are promising candidates for some aeronautic applications that require good thermomechanical behavior over long periods of time. This study focuses on the behavior of a SiC f /[Si-B-C] composite with a self-healing matrix at intermediate temperature under air. Static fatigue experiments were performed below 600 °C and a lifetime diagram is presented. Damage is monitored both by strain measurement and acoustic emission during the static fatigue experiments. Two methods of real-time analysis of associated energy release have been developed. They allow for the identification of a characteristic time that was found to be close to 55% of the measured rupture time. This critical time reflects a critical local energy release assessed by the applicability of the Benioff law. This critical aspect is linked to a damage phase where slow crack growth in fibers is prevailing leading to ultimate fracture of the composite.
机译:非氧化物纤维增强陶瓷基复合材料是某些航空应用中有希望的候选材料,这些应用需要长期保持良好的热机械性能。这项研究的重点是具有自修复基质的SiC f / [Si-B-C]复合材料在空气中温下的行为。在600°C以下进行了静态疲劳实验,并给出了寿命​​图。在静态疲劳实验期间,通过应变测量和声发射来监测损坏。已经开发了两种相关能量释放的实时分析方法。它们允许识别特征时间,该特征时间已接近所测破裂时间的55%。这个关键时间反映了根据贝尼奥夫法的适用性评估的关键局部能量释放。该关键方面与损坏阶段有关,在该阶段,纤维中缓慢的裂纹增长占主导,导致复合材料最终断裂。

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