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首页> 外文期刊>Engineering Fracture Mechanics >Interlaminar fracture characterization of woven glass/epoxy composites under mixed-mode II/III loading conditions at cryogenic temperatures
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Interlaminar fracture characterization of woven glass/epoxy composites under mixed-mode II/III loading conditions at cryogenic temperatures

机译:低温下II / III混合模式下编织玻璃/环氧树脂复合材料的层间断裂特性

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摘要

This paper presents a study of the delamination fracture behavior of woven glass fiber rein forced polymer (GFRP) composite laminates under combined Modes II and III loading at cryogenic temperatures. Mixed-mode II/III delamination fracture tests were carried out with six-point bending plate (6PBP) specimens at room temperature, liquid nitrogen tem perature (77 K) and liquid helium temperature (4 K). A three-dimensional finite element analysis was also performed to determine the critical energy release rate at the onset of delamination growth, i.e., fracture toughness, and the dependence of the fracture tough ness on the temperature and the mixed-mode II/III ratio was discussed. In addition, scan ning electron microscopic observations of the fracture surfaces were conducted to examine the cryogenic fracture mechanisms in the woven GFRP laminates under mixed-mode II/III conditions.
机译:本文介绍了在低温下II和III组合加载下玻璃纤维增​​强树脂编织复合材料层压板的分层断裂行为的研究。在室温,液氮温度(77 K)和液氦温度(4 K)下,对六点弯曲板(6PBP)标本进行了混合模式II / III分层断裂试验。还进行了三维有限元分析,以确定在分层增长开始时的临界能量释放速率,即断裂韧性,并且断裂韧性与温度和II / III混合比的关系为讨论过。另外,进行断裂表面的扫描电子显微镜观察以检查在混合模式II / III条件下编织GFRP层压板的低温断裂机理。

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