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Glass transitions of hygrothermal aged pultruded glass fibre reinforced polymer rebar by dynamic mechanical thermal analysis

机译:湿热老化拉挤玻璃纤维增​​强聚合物钢筋的玻璃化转变动态力学热分析

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摘要

The changes that can occur in glass fibre reinforced polymer (GFRP) composites with ageing can affect its application, performance and lifetime. Hygrothermal ageing (i.e. accelerated ageing by moisture absorp tion and temperature change) is a very useful technique to evaluate durability as well as development of GFRP composites in a reasonable timeframe. Dynamic mechanical thermal analysis (DMTA) is essentially able to detect all changes in the state of molecular motion in polymer composites as temperature is scanned. In this work, pultruded GFRP rebars were accelerated aged in an alkaline aqueous environment at 60 ℃ for 1, 2, 3,4 and 6 months to evaluate the changes in glass transition of viscoelastic GFRP rebars by DMTA. Five different glass transitions in an average temperate range from 110 to 165 ℃ were observed at storage modulus, loss modulus and damping factor traces of DMTA. It was also found that glass transition temperature (T_g) of the aged samples changed up to maximum 6 ℃ compared with that of controlled sample. This change in T_g with ageing time was believed to be due to moisture absorption by rebars.
机译:玻璃纤维增​​强聚合物(GFRP)复合材料随老化而发生的变化会影响其应用,性能和寿命。湿热老化(即因吸湿和温度变化而加速老化)是一种非常有用的技术,可在合理的时间内评估耐久性以及GFRP复合材料的发展。动态机械热分析(DMTA)基本上能够检测扫描温度时聚合物复合材料中分子运动状态的所有变化。在这项工作中,将拉挤的GFRP钢筋在碱性水环境中于60℃加速老化1、2、3、4和6个月,以评估DMTA对粘弹性GFRP钢筋的玻璃化转变的影响。在DMTA的储能模量,损耗模量和阻尼因子曲线下,观察到在平均温度范围为110至165℃的五个不同的玻璃化转变。还发现与对照样品相比,老化样品的玻璃化转变温度(T_g)改变为最高6℃。 T_g随老化时间的这种变化被认为是由于钢筋吸收了水分。

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