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Investigation of the curing behaviour of carbon fibre epoxy prepreg by Dynamic Mechanical Analysis DMA

机译:动态力学分析DMA研究碳纤维环氧预浸料的固化性能

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Carbon fibre prepregs have found widespread application in lightweight constructions. They are based on a carbon fibre fabric impregnated with reactive epoxy resin. Measurements were carried out using commercially available prepreg material. For Dynamic Mechanical Analysis (DMA), a single cantilever measuring device was applied. The DMA results were refined by additional DSC measurements. The measurements were carried out with dynamic heating in the temperature range -90 to 280 °C. The heating rates were 1 and 2 K/min, respectively. A glass transition of the uncured material (T_(g0)) near 1 °C, and crosslinking-induced vitrification and devitrification at the maximal glass transition temperature of the cured material (T_(gmax)) in the temperature range 220 to 230 °C were found. The activation energies for the glass transitions were determined using an Arrhenius plot. By detailed consideration of the influence of the frequency on the DMA data, indications for gelation were deduced.
机译:碳纤维预浸料已广泛应用于轻质结构中。它们基于浸渍有反应性环氧树脂的碳纤维织物。使用可商购的预浸料进行测量。对于动态力学分析(DMA),使用了单个悬臂测量设备。 DMA结果通过其他DSC测量进行了完善。在动态加热中,在-90至280°C的温度范围内进行测量。加热速率分别为1和2K / min。未固化材料的玻璃化转变温度(T_(g0))接近1°C,并且在220至230°C的温度范围内,在固化材料的最高玻璃化转变温度(T_(gmax))交联引起的玻璃化和失透被找到。使用阿伦尼乌斯图确定玻璃化转变的活化能。通过详细考虑频率对DMA数据的影响,推断出凝胶化的迹象。

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