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Failure mechanism of woven roving fabric/vinyl ester composites in freeze-thaw saline environment

机译:冻融盐水环境中梭织织物/乙烯基酯复合材料的失效机理

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摘要

This experimental study investigates the degradation mechanisms of a glass fiber-reinforced plastic material commonly used in civil engineering applications. A substantial reduction in tensile, shear, and compression properties was observed after 100 days of freeze-thaw cycling in saline environment (-20 degrees C to 20 degrees C). Non-destructive inspection techniques were progressively conducted on unexposed (ambient condition) and exposed (conditioned) specimens. The dynamic mechanical analysis showed permanent decrease in storage modulus that was attributed to physical degradation of the polymer and/or fiber-matrix interface. This indicated the formation of internal cracks inside the exposed glass fiber-reinforced plastic laminate. The 3D X-ray tomography identified preferred damage sites related to intralaminar and interlaminar cracks. The ultrasonic C-scan and optical microscopy showed the nature of the damage and fibers fracture. The thermal cycling events degraded the matrix binding the warp and fill fibers, thus impairing the structural integrity of the cross-ply laminate. The result of this work could benefit a multi-scale durability and damage tolerance model to predict the material state of composite structures under typical service environments.
机译:该实验研究研究了常用于土木工程应用的玻璃纤维增​​强塑料材料的降解机制。在盐水环境(-20℃至20℃)的冻解循环循环100天后,观察到拉伸,剪切和压缩性能的显着降低。未破坏性检查技术逐渐导致未曝光(环境条件)和暴露(调节)标本进行。动态力学分析显示出归因于聚合物和/或纤维 - 基质界面的物理降解的储存模量的永久性降低。这表明在暴露的玻璃纤维增​​强塑料层压板内部形成内裂纹。 3D X射线断层扫描识别与史内非历史和层间裂缝相关的优选损伤网站。超声波C扫描和光学显微镜显示损伤和纤维裂缝的性质。热循环事件降解了粘合翘曲和填充纤维的基质,从而损害了交叉层层压板的结构完整性。该工作的结果可以使多尺度耐久性和损坏公差模型受益,以预测典型服务环境下的复合结构的材料状态。

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