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Effects of Hygrothermal Cycling on the Chemical, Thermal, and Mechanical Properties of 862/W Epoxy Resin

机译:湿热循环对862 / W环氧树脂化学,热和机械性能的影响

摘要

The hygrothermal aging characteristics of an epoxy resin were characterized over 1 year, which included 908 temperature and humidity cycles. The epoxy resin quickly showed evidence of aging through color change and increased brittleness. The influence of aging on the material s glass transition temperature (Tg) was evaluated by Differential Scanning Calorimetry (DSC) and Dynamic Mechanical Analysis (DMA). The Tg remained relatively constant throughout the year long cyclic aging profile. The chemical composition was monitored by Fourier Transform Infrared Spectroscopy (FTIR) where evidence of chemical aging and advancement of cure was noted. The tensile strength of the resin was tested as it aged. This property was severely affected by the aging process in the form of reduced ductility and embrittlement. Detailed chemical evaluation suggests many aging mechanisms are taking place during exposure to hygrothermal conditions. This paper details the influence of processes such as: advancement of cure, chemical degradation, and physical aging on the chemical and physical properties of the epoxy resin.
机译:表征了环氧树脂在一年内的湿热老化特性,其中包括908个温度和湿度循环。环氧树脂通过变色和增加的脆性迅速显示出老化的迹象。通过差示扫描量热法(DSC)和动态力学分析(DMA)评估了时效对材料玻璃化转变温度(Tg)的影响。在整个一年的周期性衰老过程中,Tg保持相对恒定。化学成分通过傅立叶变换红外光谱仪(FTIR)进行监测,其中记录了化学老化和固化进展的迹象。在老化时测试树脂的拉伸强度。老化过程以延展性和脆性降低的形式严重影响了该性能。详细的化学评估表明,暴露于湿热条件下会发生许多老化机制。本文详细介绍了以下过程的影响:固化的进展,化学降解和物理老化对环氧树脂的化学和物理性质的影响。

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