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Hygrothermomechanical evaluation of transverse filament tape epoxy/polyester fiberglass composites

机译:横向长丝胶带环氧/聚酯玻璃纤维复合材料的湿热力学评估

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摘要

The static and cyclic load behavior of transverse filament tape (TFT) fiberglass/epoxy and TFY fiberglass/polyester composites, intended for use in the design of low-cost wind turbine blades, are presented. The data behavior is also evaluated with respect to predicted properties based on an integrated hygrothermomechanical response theory. Experimental TFT composite data were developed by the testing of laminates made by using composite layups typical of those used for the fabrication of TFT fiberglass wind turbine blades. Static properties include tension, compression, and interlaminar shear strengths at ambient conditions and at high humidity/elevated temperature conditions after a 500 hour exposure. Cyclic fatigue data were obtained using similar environmental conditions and a range of cyclic stresses. The environmental (temperature and moisture) and cyclic load effects on composite strength degradation are subsequently compared with the predictions obtained by using the composite life/durability theory. The results obtained show that the predicted hygrothermomechanical environmental effects on TFT composites are in good agreement with measured data for various properties including fatigue at different cyclic stresses.
机译:提出了用于设计低成本风力涡轮机叶片的横向长丝胶带(TFT)玻璃纤维/环氧树脂和TFY玻璃纤维/聚酯复合材料的静态和循环载荷行为。还基于集成的湿热力学响应理论,针对预测属性评估了数据行为。通过对层压板进行测试,开发出了实验性TFT复合材料数据,这些层压板使用的复合层压板通常用于制造TFT玻璃纤维风力涡轮机叶片。静态特性包括在暴露500小时后的环境条件和高湿度/高温条件下的拉伸,压缩和层间剪切强度。循环疲劳数据是使用相似的环境条件和一定范围的循环应力获得的。随后将环境(温度和湿度)和循环载荷对复合材料强度退化的影响与使用复合材料寿命/耐久性理论获得的预测结果进行比较。获得的结果表明,预测的湿热力学对TFT复合材料的环境影响与各种性能的测量数据非常吻合,包括在不同循环应力下的疲劳。

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    Lark, R. L.; Chamis, C. C.;

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