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Delamination Growth Mechanisms in Woven Glass Fiber Reinforced Polymer Composites under Mode II Fatigue Loading at Cryogenic Temperatures

机译:纺织玻璃纤维增​​强聚合物复合材料中的分层生长机制在低温温度下疲劳负载下

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摘要

The purpose of this research is to characterize the cryogenic delamination growth behavior in woven glass fiber reinforced polymer (GFRP) composite laminates subjected to Mode II fatigue loading. Mode II fatigue delamination tests were performed at room temperature, liquid nitrogen temperature (77 K) and liquid helium temperature (4 K) using the four-point bend end-notched flexure (4ENF) test method, and the delamination growth rate data for the woven GFRP laminates were obtained. The energy release rate range was determined by the finite element method. Microscopic examinations of the specimen sections and fracture surfaces were also carried out. The present results are discussed to obtain an understanding of the fatigue delamination growth mechanisms in the woven GFRP laminates under Mode II loading at cryogenic temperatures.
机译:本研究的目的是在经过模式II疲劳负载的织造玻璃纤维增​​强聚合物(GFRP)复合层压板中的低温分层生长行为的表征。模式II疲劳分层测试在室温,液氮温度(77k)和液氦温度(4 k)使用四点弯曲端缺口弯曲(4enF)测试方法,以及用于的分层生长速率数据获得编织GFRP层压材料。通过有限元法测定能量释放率范围。还进行了样品切片和断裂表面的显微检查。讨论了本发明的结果,以了解在低温温度下的模式II加载下的编织GFRP层压板中的疲劳分层生长机制。

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