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首页> 外文期刊>Journal of Materials Science >Dynamics of absorbed water in model composites of polyamide 6 and carbon fibre evaluated by differential scanning calorimetry
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Dynamics of absorbed water in model composites of polyamide 6 and carbon fibre evaluated by differential scanning calorimetry

机译:用差示扫描量热法评估聚酰胺6和碳纤维模型复合材料中吸收水的动力学

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The crystallization and subsequent melting behaviour of absorbed water in the model composites of polyamide 6 (PA6) and carbon fibre were investigated by differential scanning calorimetry (DSC) in comparison with those in neat PA6, using the small rectangular specimens exposed to water at 90 degrees C. In the DSC curves of PA6 any exothermic peaks of crystallization and endothermic ones of melting were not observed, but a step corresponding to glass transition was observed at about -30 degrees C during the heating process. Thus water absorbed by neat PA6 was recognized as non-freezing bound water which does not crystallize, probably due to the strong interaction with the polyamide chains. On the other hand, for the model composite several exothermic peaks were clearly observed at temperatures ranging from -10 to -20 degrees C, and their intensity was increased with increasing the fibre content. The distinct endothermic peaks were detected around at 0 degrees C during the reversed heating process. The glass transition temperature was not affected by adding the carbon fibre. Comparing with the result of neat PA6 indicates that in the model composite water exists in a state near free water, besides the non-freezing bound water dispersed in the matrix polyamide. It is further implied that water is mainly accumulated in the matrix/fibre interfacial region with some microstructural heterogeneties or defects, in which the water molecules can easily move under much weaker interaction with the polyamide chains.
机译:通过差示扫描量热法(DSC)与纯净PA6中的样品比较,使用暴露于90度水的矩形小样本,通过差示扫描量热法(DSC)研究了聚酰胺6(PA6)和碳纤维的模型复合物中吸收水的结晶和随后的熔融行为在PA6的DSC曲线中,未观察到结晶的放热峰和熔融的吸热峰,但是在加热过程中在约-30℃观察到对应于玻璃化转变的台阶。因此,纯净的PA6吸收的水被认为是未冻结的,不会结晶的水,这可能是由于与聚酰胺链的强烈相互作用所致。另一方面,对于模型复合材料,在-10至-20摄氏度的温度范围内清楚地观察到几个放热峰,并且它们的强度随着纤维含量的增加而增加。在反向加热过程中,在0摄氏度附近检测到明显的吸热峰。玻璃化转变温度不受添加碳纤维的影响。与纯净PA6的结果比较表明,在模型复合水中,除了分散在基体聚酰胺中的非冷冻结合水以外,还以接近自由水的状态存在。进一步暗示水主要聚集在具有一些微观结构异质性或缺陷的基质/纤维界面区域中,其中水分子在与聚酰胺链的相互作用弱得多的情况下容易移动。

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