首页> 外文期刊>Journal of Applied Polymer Science >Accelerated ageing versus realistic ageing in aerospace composite materials. IV. Hot/wet ageing effects in a low temperature cure epoxy composite
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Accelerated ageing versus realistic ageing in aerospace composite materials. IV. Hot/wet ageing effects in a low temperature cure epoxy composite

机译:航空复合材料中的加速老化与实际老化。 IV。低温固化环氧复合材料的热/湿老化效应

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Samples of an aerospace grade carbon fiber epoxy composite (Hexcel, M20/IM7) were subject to long term (approximate to 1 year) hot/wet ageing and thermal spiking under a variety of humidity levels and temperature conditions related to "in service" conditions seen by military aircraft. Changes to the chemical and physicochernical structure of the composite were analyzed by a range of different techniques including gravimetric analysis, FTIR, and DMA to compare the effects of the various ageing conditions. The results indicated that the chemical effects of hot/wet and spiking conditions on this incompletely cured type of composite are very complex because of the variations in moisture levels and cure chemistry from the composite surface inwards as the resin ages under the different external environments. Physicochemical changes (such as T-g) and structural effects (such as microcracking) are similarly complex and dependent on composite thickness. (C) 2007 Wiley Periodicals, Inc. J Appl Polym Sci 106: 4264-4276, 2007
机译:航空级碳纤维环氧复合材料(Hexcel,M20 / IM7)的样品在与“使用中”条件相关的各种湿度和温度条件下,经受了长期(约1年)的热/湿老化和热冲击。被军用飞机看到。通过一系列不同的技术(包括重量分析,FTIR和DMA)分析了复合材料化学和物理化学结构的变化,以比较各种老化条件的影响。结果表明,由于在不同的外部环境下,随着树脂老化,水分含量和固化化学成分从复合材料表面向内变化,因此热/湿和尖峰条件对这种不完全固化的复合材料的化学影响非常复杂。理化变化(例如T-g)和结构效应(例如微裂纹)同样复杂,并且取决于复合材料的厚度。 (C)2007 Wiley Periodicals,Inc. J Appl Polym Sci 106:4264-4276,2007

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