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Statistical data for the tensile properties and static fatigue of sic-based bundles

机译:统计数据的拉伸性能和SiC基束的静态疲劳

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摘要

Due to their high specific strength at elevated temperatures and resistance to oxidative environments, SiC-based fibers are of great interest for the reinforcement of ceramic matrix composites. They are however subjected to a slow crack growth (SCG) phenomenon causing their delayed failure under subcritical conditions. The testing of filaments, other than comprising handling difficulties, requires large sets of data (broadly dispersed), drawback alleviated by multifilament tow testing. The data available in the present paper correspond to a comprehensive mechanical characterization and static fatigue testing of various types of SiC-based fiber bundles. The initial non-linearity of load displacement curves were analyzed to reveal the tow structure originating from filament misalignment. Static fatigue tests were used to assess the lifetime prediction coefficients and its distribution parameters. These data may found interest for the interpretation of dispersion bundle testing can highlight under different solicitation mode. Such data are also prominent for the wealth of composite design and to guaranty long term performances over the broad application field offered.
机译:由于它们在升高的温度和对氧化环境的耐受性的高比强度,基于SiC的纤维对于陶瓷基质复合材料的增强非常令人兴趣。然而,它们受到缓慢的裂缝增长(SCG)现象,导致亚临界条件下的延迟失效。除了包括处理困难之外的长丝测试需要大量数据(广泛分散),通过复丝牵引测试减轻了缺点。本文中提供的数据对应于各种类型的基于SiC基纤维束的综合机械表征和静态疲劳试验。分析负载位移曲线的初始非线性以显示源自长丝未对准的丝束结构。静态疲劳试验用于评估寿命预测系数及其分布参数。这些数据可能会发现对分散束测试的解释的兴趣可以在不同的征集模式下突出显示。这些数据也突出了复合设计的财富,并担除了所提供的广泛应用领域的长期表现。

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