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Evaluation of a Life Prediction Model and Environmental Effects of Fatigue for Glass Fiber Composite Materials

机译:玻璃纤维复合材料的寿命预测模型和疲劳的环境影响评估

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摘要

Fiber-reinforced polymer (FRP) composites are being utilized in an increasing number of applications in structural industries. Establishing values for long-term fatigue response is essential for widespread use of FRP composites. The variety of available fibers, matrix materials, and manufacturing processes makes the fatigue response difficult to predict without extensive empirical testing. A proposed fatigue life prediction model uses the internal strain energy release rate as the metric for predicting fatigue life from a minimum of data points. The objective of this research was to apply the above model to fatigue data for various composite coupons and components in order to evaluate its applicability in predicting fatigue life. The model was found to be able to regularly fit and predict fatigue data within 5 % log error at both coupon and component levels. The effects of environmental conditions, including 12 MPa pressurized absorption and fatiguing in salt water and elevated temperatures, were also explored for a glass/vinyl ester FRP. The results of this research can be used to aid in the design of numerous structural FRP applications, such as windmill blades, bridge decks, or deep sea piping.
机译:纤维增强聚合物(FRP)复合材料在结构工业中的应用越来越多。建立长期疲劳响应的值对于FRP复合材料的广泛使用至关重要。没有大量的经验测试,各种可用的纤维,基体材料和制造工艺使疲劳​​响应难以预测。提出的疲劳寿命预测模型使用内部应变能释放率作为从最少数据点预测疲劳寿命的度量。这项研究的目的是将上述模型应用于各种复合材料试样和组件的疲劳数据,以评估其在预测疲劳寿命中的适用性。发现该模型能够在试件和组件水平上定期拟合和预测5%误差以内的疲劳数据。对于玻璃/乙烯基酯FRP,还探讨了环境条件的影响,包括12 MPa的加压吸收和盐水疲劳以及高温的疲劳。这项研究的结果可用于帮助设计许多结构性FRP应用,例如风车叶片,桥面板或深海管道。

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