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根据热传导和固化动力学理论,采用三维有限元方法,对正交各向异性复合材料层合板固化过程的温度和固化度历程及其变化规律进行数值模拟研究.在有限元分析中节点自由度为温度和固化度,考虑了两者之间的耦合作用.计算结果表明:厚度越大,温度峰值越高,中心点开始固化越晚;不同纤维体积含量层合板在固化初期是同步的;中心点温度超过保温平台(85℃)后,随着环境温度继续升高,纤维体积含量越低,中心点温度峰值越大,出现时间越早.

参考文献

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