首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Interdiffusion and phase separation upon curing in thermoset-thermoplastic interphases unravelled by the characterization of partially cured systems
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Interdiffusion and phase separation upon curing in thermoset-thermoplastic interphases unravelled by the characterization of partially cured systems

机译:在热固性-热塑性相中固化时的相互扩散和相分离,未通过部分固化的系统进行表征

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摘要

The evolution upon curing of interdiffusion as well as phase separation is characterized at the interphase between a high T-g poly(ether sulfone) thermoplastic (TP) and a high density thermosetting network (TS), both components being initially miscible. We show that the late stages of the diffusion process overlap with the early stages of phase separation, which is contrary to the expectations from the current state of the art. The penetration depth of the TS into the TP is found to increase with decreasing gelation time within the investigated operating window. This is due to the stronger thermal activation of diffusion over reaction at the early stages of curing. A chemometric model is developed based on Raman spectroscopy data in order to further analyze these results. The predictions of the model are compared with the profiles generated by image analysis carried on microtomed sections of fully cured interphases. The concentration profiles of partially cured interphases are predicted as well and used to correlate the degree of curing of the TS with the front velocity for each profile. (C) 2016 Published by Elsevier Ltd.
机译:互扩散的固化以及相分离的演变特征在于高T-g聚(醚砜)热塑性塑料(TP)和高密度热固性网络(TS)之间的界面,这两种成分最初都是可混溶的。我们表明,扩散过程的后期与相分离的早期阶段重叠,这与当前技术水平的预期相反。发现在所研究的操作窗口内,TS进入TP的渗透深度随着胶凝时间的减少而增加。这是由于在固化的早期阶段,扩散对反应的热活化作用较强。为了进一步分析这些结果,基于拉曼光谱数据开发了化学计量模型。将模型的预测与通过对完全固化的中间相的微切片部分进行的图像分析生成的轮廓进行比较。还预测了部分固化的中间相的浓度曲线,并用于将TS的固化程度与每个曲线的前沿速度相关。 (C)2016由Elsevier Ltd.出版

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