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A unified fatigue life model based on energy method

机译:基于能量法的统一疲劳寿命模型

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摘要

A new unified fatigue life model based on the energy method is developed for unidirectional polymer composite laminates subjected to constant amplitude, tension-tension or compression-compression fatigue loading. This new fatigue model is based on static failure criterion presented by Sandhu and substantially is normalized to static strength in fiber, matrix and shear directions. The proposed model is capable of predicting fatigue life of unidirectional composite laminates over the range of positive stress ratios in various fiber orientation angles. By using this new model all data points obtained from various stress ratios and fiber orientation angles are collapsed into a single curve. The new fatigue model is verified by applying it to different experimental data provided by other researchers. The obtained results by the new fatigue model are in good agreements with the experimental data of carbon/epoxy and E-glass/epoxy of unidirectional plies.
机译:针对单向聚合物复合材料层合板在恒定振幅,拉伸-拉伸或压缩-压缩疲劳载荷下,开发了一种基于能量方法的统一疲劳寿命新模型。这种新的疲劳模型基于Sandhu提出的静态破坏准则,并已针对纤维,基体和剪切方向的静态强度进行了标准化。所提出的模型能够在各种纤维取向角度下,在正应力比范围内预测单向复合材料层压板的疲劳寿命。通过使用该新模型,将从各种应力比和纤维取向角获得的所有数据点折叠为一条曲线。通过将其应用于其他研究人员提供的不同实验数据,可以验证新的疲劳模型。通过新的疲劳模型获得的结果与单向碳层的碳/环氧树脂和电子玻璃/环氧树脂的实验数据吻合良好。

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