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On the response to hygrothermal aging of pultruded FRPs used in the civil engineering sector

机译:关于土木工程领域拉挤玻璃钢的湿热老化的响应

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摘要

This paper presents the effects of hygrothermal aging on the durability of a pultruded flat sheet, immersed in distilled water at 25 °C, 40 °C, 60 °C or 80 °C for a period of 224 days. Elevated temperatures noticeably increase the moisture diffusion coefficient and moisture uptake behaviour. Measured changes in the tensile and in-plane shear mechanical properties were examined after 28, 56, 112 or 224 days. Tensile properties remained practically unaffected by aging whereas matrix dominated shear properties revealed an initial drop which was recovered to a substantial degree after further hygrothermal aging. Visco-elastic property changes due to the superimposing mechanisms of plasticization, additional cross-linking etc. were recorded. Scanning Electron Microscopy micrographs indicate that the fibre/matrix interface remained practically intact, even after the most aggressive hot/wet aging. X-ray Energy Dispersive Spectroscopy analysis showed no chemical degradation incidents on the fibre reinforcement surfaces and infrared spectroscopy revealed superficial chemical alteration in the aging matrix. Optical microscopy revealed matrix cracking in samples aged at 80 °C for 112 days. Lastly, Computed Tomography scans of un-aged material showed internal imperfections that undoubtedly enhanced moisture transport. After aging at 60 °C for 112 days, Computed Tomography detected preferentially situated water pockets.
机译:本文介绍了湿热老化对拉挤平板的耐久性的影响,该拉挤平板在25°C,40°C,60°C或80°C的蒸馏水中浸泡了224天。升高的温度明显增加了水分扩散系数和水分吸收行为。在28、56、112或224天后检查拉伸和面内剪切机械性能的测量变化。拉伸性能实际上不受老化影响,而基体为主的剪切性能显示出初始的下降,该下降在进一步湿热老化后被恢复到相当大的程度。记录了由于增塑,附加交联等叠加机制而引起的粘弹性变化。扫描电子显微镜显微照片表明,即使在最剧烈的热/湿老化之后,纤维/基体的界面仍保持完好无损。 X射线能量色散光谱分析表明,纤维增强材料表面未发生化学降解事件,红外光谱显示老化基质中的表面化学变化。光学显微镜显示在80°C老化112天的样品中出现基质开裂。最后,计算机断层扫描对未老化材料的扫描显示出内部缺陷,这无疑增加了水分的传输。在60°C下老化112天后,计算机断层扫描检测到了优先定位的水袋。

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