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Degradation of dynamic mechanical properties of glass fiber reinforced polyester composite pipes after immersion in various temperatures

机译:浸渍在不同温度下的玻璃纤维增​​强聚酯复合管的动态力学性能下降

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This paper reports the effect of sulfuric acid solution absorption on the dynamic mechanical properties of glass fiber reinforced polyester composites. An experimental device is presented that allows the effect of changes of environment and temperature on both the diffusion coefficient and the maximum moisture content to be measured. The results indicate that increased temperature raises both the diffusion coefficient and the maximum absorbed moisture of all the composite materials used in this study. Moreover, it has been noted that specimens exposed to higher temperature absorb much more water than those held at low temperature. The dynamic mechanical properties of glass fiber reinforced polyester were found to be highly affected by the presence of absorbed solvents in the specimen and increases in temperature. A fractographic study has been conducted using a scanning electron microscope of the surfaces of specimens broken by tensile testing. Observations indicate that increased immersion time increases the deterioration of the fibre/matrix interface.
机译:本文报道了硫酸溶液吸收对玻璃纤维增​​强聚酯复合材料动态力学性能的影响。提出了一种实验设备,该设备允许测量环境和温度变化对扩散系数和最大水分含量的影响。结果表明,升高温度会提高本研究中使用的所有复合材料的扩散系数和最大吸收水分。此外,已经注意到,暴露于高温下的样品比保持在低温下的样品吸收更多的水。发现玻璃纤维增​​强聚酯的动态机械性能受到样品中吸收溶剂的存在和温度升高的高度影响。使用扫描电子显微镜对通过拉伸试验破坏的样品表面进行了分形研究。观察表明,增加的浸入时间会增加纤维/基质界面的劣化。

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