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Models of Nonlinear Fatigue Damage Accumulation Under Cyclic Block Loadings of Layered Composites

机译:分层复合材料循环块载荷下非线性疲劳损伤累积模型

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摘要

Considered are two types of multistage cyclic block loading rather common in the practice of fatigue tests and fatigue life predictions for layered polymer composite materials: block loading by four-stage cyclic regular zero-tension loads and block loading by multistage (8-10 levels) asymmetric cyclic loads. In order to improve the prediction accuracy for the fatigue life of carbon-fiber-reinforced plastics under such loadings, special nonlinear fatigue damage accumulation models are proposed. Elaborated are methods for predicting the fatigue life of carbon-fiber-reinforced plastics by the models proposed. The prediction methods are verified by the example of T800/5245 and AS4/3501-6 carbon-fiber-reinforced laminates. A relatively high accuracy of fatigue life predictions for the laminates was obtained as compared with that given by prediction methods using the Palmgren-Miner rule.
机译:考虑是两种类型的多级循环块加载,在疲劳试验的实践中加载和分层聚合物复合材料的疲劳寿命预测:通过四阶段循环常规零张力载荷的阻断加载,通过多级(8-10级) 不对称循环负载。 为了提高碳纤维增强塑料在这种载荷下的预测精度,提出了特殊的非线性疲劳损伤累积模型。 阐述的是通过提出的模型预测碳纤维增强塑料的疲劳寿命的方法。 通过T800 / 5245和AS4 / 3501-6碳纤维增强层压板的示例来验证预测方法。 与使用PalmGren-Miner规则的预测方法给出的相比,获得对层压板的疲劳寿命预测的相对高的精度。

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