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Study of hygrothermal ageing of glass fibre reinforced PET composites

机译:玻璃纤维增​​强PET复合材料的湿热老化研究

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摘要

Hygrothermal ageing has been investigated on glass fibre reinforced polyethylene terephthalate (PET) composites using complementary techniques and a multiscale approach in order to identify the different steps of the material's degradation. For early ageing times (t < 6 h), DMTA tests give evidence of the plasticisation of the PET matrix. GPC measurements and acid end group titration show that the chemical degradation step of the composites occurs immediately and that the main degradation mechanism is random chain scission. The changes in morphology resulting from hydrolysis, investigated through DSC and SAXS experiments, reveal a decrease in the long period that may result from the diffusion of oligomers out of the spherulites. The water uptake for long ageing times is attributed to an interfacial debonding which induces an osmotic pressure in this area. Photomechanical measurements highlight the development of microcracks within the aged material that induced an increase in the variation of material volume.
机译:已对玻璃纤维增​​强的聚对苯二甲酸乙二醇酯(PET)复合材料的湿热老化进行了研究,使用了互补技术和多尺度方法,以确定材料降解的不同步骤。对于较早的老化时间(t <6小时),DMTA测试提供了PET基质可塑化的证据。 GPC测量和酸端基滴定表明,复合材料的化学降解步骤立即发生,并且主要的降解机理是随机断链。通过DSC和SAXS实验研究,由水解引起的形态变化表明,低聚物从球粒中扩散出来可能导致长时间的减少。老化时间长的水的吸收归因于界面剥离,该界面剥离引起该区域的渗透压。光机械测量突出了老化材料中微裂纹的发展,导致了材料体积变化的增加。

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