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Accelerated fatigue properties of unidirectional carbon/epoxy composite materials

机译:单向碳/环氧复合材料的加速疲劳性能

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It has been confirmed that polymer matrix composites possess viscoelastic behavior. This means that one could accelerate the fatigue testing by changing the stress amplitude, frequency, or temperature. This study is to investigate the accelerated fatigue properties, which are resulted from the viscoelastic behavior, of carbon/epoxy composites and to predict their fatigue life. For this purpose, a series of fatigue tests of unidirectional specimens are conducted at room temperature under different stress ratios and stress frequencies. A group of sigmoid S-N curves, which are suitable for the whole fatigue life, and the corresponding parameters are developed for different cyclic loading conditions. A transformation method, which can transform a reference S-N curve to the corresponding S-N curve of the assigned fatigue conditions, is established by the parameters. And this S-N curve can be utilized to predict the fatigue life of the composite at the assigned stress ratio or stress frequency. The comparison between the linear and sigmoid S-N curves is also carried out to show the advantages of the latter model in the whole fatigue life.
机译:已经证实聚合物基复合材料具有粘弹性行为。这意味着可以通过更改应力幅度,频率或温度来加速疲劳测试。这项研究旨在研究碳/环氧复合材料的粘弹性行为所产生的加速疲劳性能,并预测其疲劳寿命。为此,在室温下在不同的应力比和应力频率下进行了一系列单向试样的疲劳测试。一组适合整个疲劳寿命的S型S-N曲线,并针对不同的循环载荷条件开发了相应的参数。通过参数建立了一种转换方法,该方法可以将参考S-N曲线转换为指定疲劳条件的相应S-N曲线。而且,该S-N曲线可用于预测复合材料在指定的应力比或应力频率下的疲劳寿命。还对线性和S型曲线进行了比较,以显示后者模型在整个疲劳寿命中的优势。

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