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Flexural fatigue life prediction of CFRP-Nomex honeycomb sandwich beams

机译:CFRP-Nomex蜂窝夹芯梁的弯曲疲劳寿命预测

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Long-term flexural fatigue life of composite sandwich beams consisting of plain weave carbon 3K-70P/epoxy (CFRP) faceplates and Nomex honeycomb core is studied using time-temperature superposition principle (TTSP) by extending our previous study on laminates [Composites Part B: Engineering (19):539-547, 2016]. Considering negligible effect of temperature on the honeycomb core performance, time-temperature shift factors (TTSF) of the sandwich beams is assumed to be same as that of the CFRP faceplates. Hence, TTSFs are taken from previous laminates study. Constant strain rate (CSR) experiments at various temperatures and strain rates are conducted to construct the CSR master curve, followed by prediction and validation of creep strength master curve. Flexural fatigue tests were then conducted at various temperatures and load levels to construct S-N curves at respective temperatures. Finally, fatigue strength master curve is constructed. Within experimental scatter, predicted fatigue behavior at any given (a) frequency and (b) load ratio is confirmed to be in reasonable agreement with the experimental measurements.
机译:通过扩展我们先前对层压板的研究,使用时温度叠加原理(TTSP)研究了由平纹碳3K-70P /环氧树脂(CFRP)面板和Nomex蜂窝芯组成的复合夹层梁的长期挠曲疲劳寿命[复合材料B部分] :工程(19):539-547,2016]。考虑到温度对蜂窝芯性能的影响可忽略不计,假定夹层梁的时温偏移因子(TTSF)与CFRP面板的相同。因此,TTSFs来自先前的层压板研究。进行了在各种温度和应变率下的恒定应变率(CSR)实验,以构建CSR主曲线,然后预测和验证了蠕变强度主曲线。然后在各种温度和载荷水平下进行弯曲疲劳测试,以在各个温度下构建S-N曲线。最后,建立疲劳强度主曲线。在实验散点图内,可以确定在任何给定的(a)频率和(b)负载比下的预测疲劳行为与实验测量值合理吻合。

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