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Prediction of lifetime in static fatigue at high temperatures for ceramic matrix composites

机译:陶瓷基复合材料高温下静态疲劳的寿命预测

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Previous works have shown that ceramic matrix composites are sensitive to delayed failure during fatigue in oxidizing environments. The phenomenon of slow crack growth has been deeply investigated on single fibers and multifilament tows in previous papers. The present paper proposes a multiscale model of failure driven by slow crack growth in fibers, for 2D woven composites under a constant load. The model is based on the delayed failure of longitudinal tows. Additional phenomena involved in the failure of tows have been identified using fractographic examination of 2D woven SiC/SiC composite testspecimens after fatigue tests at high temperatures. Stochastic features including random load sharing, fiber overloading, fiber characteristics and fiber arrangement within the tows have been introduced using appropriate density functions. Rupture time predictions are compared to experimental data.
机译:以前的作用表明,陶瓷矩阵复合材料对氧化环境疲劳期间延迟失效敏感。在先前纸张中的单纤维和复丝截头上深入研究了缓慢裂纹增长的现象。本文提出了通过纤维慢裂纹的慢裂纹增长驱动的多尺度失效模型,对于恒定负载下的2D编织复合材料。该模型基于延迟失败的纵向拖带。在高温下疲劳试验后,已经使用2D编织SiC / SiC复合试验特异性的Fretography检查鉴定了涉及奶头失败的额外现象。使用适当的密度函数引入了随机负荷共享,纤维过载,光纤特性和光纤布置的随机特征。将破裂时间预测与实验数据进行比较。

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