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Effect of cure cycle on enthalpy relaxation and post shrinkage in neat epoxy and epoxy composites

机译:固化周期对纯环氧及环氧复合材料焓松弛和后收缩的影响

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摘要

The effect of cure cycle on enthalpy relaxation and warpage is studied for both neat epoxy and glass/epoxy composites. An approach for determining the enthalpy relaxation in the matrix of composite materials combining modulated differential scanning calorimetry and thermogravimetry is presented. The enthalpy relaxation is coupled to structural dimension changes upon reheating by performing modulated thermo mechanical analysis. The enthalpy relaxation is affected by the cooling rate and the presence of the fibrous reinforcement, but is unaffected by variation between a 1-stage and 2-stage cure cycle. Enthalpy recovery is found to exert a minor impact on the sample dimension during reheating since a non-reversing shrinkage is observed during reheating. This shrinkage is ascribed to structural changes on molecular level in the specimen and it is inferred that samples with a high initial disorder only exhibit a small dimensional change during reheating due to structural restrictions within the amorphous polymer network. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了纯环氧和玻璃/环氧复合材料固化周期对焓松弛和翘曲的影响。提出了一种结合调制差示扫描量热法和热重法测定复合材料基体中焓弛豫的方法。通过执行调制的热机械分析,焓松弛与重新加热时的结构尺寸变化相关。焓松弛受冷却速率和纤维增强材料的存在的影响,但不受第一阶段和第二阶段固化周期之间变化的影响。由于在重新加热过程中观察到不可逆的收缩,因此发现在重新加热过程中焓恢复对样品的尺寸影响很小。该收缩归因于样品中分子水平上的结构变化,并且可以推断,由于无定形聚合物网络内的结构限制,具有高初始无序性的样品在再加热期间仅表现出较小的尺寸变化。 (C)2016 Elsevier B.V.保留所有权利。

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