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Kinetics of temperature-induced and reaction-induced phase separation studied by modulated temperature DSC

机译:调制温度DSC研究温度诱导和反应诱导相分离的动力学

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Temperature-induced phase separation of P(EO75-ran-PO25)/PES and reaction-induced phase separation of DGEBA/MDA modified with PVME are studied using MTDSC as an in-situ tool. Phase separation can be probed by the onset of an 'excess' contribution in the MTDSC heat capacity signal, in good correspondence with the cloud point temperature. This feature enables the complete construction of the state diagram of P(EO75-ran-PO25)/PES. The detection of phase separation-induced partial vitrification of the high-T-g phase (PES-rich phase) enables to sub-divide the LCST-type heterogeneous region in a zone 1 (no interference of partial vitrification) and a zone 2 (interference of partial vitrification of the PES-rich phase). This subdivision of the heterogeneous region has drastic implications on the remixing behavior of demixed blends. in DGEBA/MDA modified with PVME, reaction-induced phase separation accompanied by an increase in reaction rate, followed by a vitrification step of the epoxy-amine phase can be detected in-situ. In non-isothermal conditions, a diffusion-controlled reaction after vitrification and a final devitrification of the system is also observed.
机译:以MTDSC为现场研究了P(EO75-ran-PO25)/ PES的温度诱导相分离和PVME修饰的DGEBA / MDA的反应诱导相分离。可以通过在MTDSC热容信号中出现“过量”贡献来探测相分离,这与浊点温度有很好的对应关系。此功能可以完整构造P(EO75-ran-PO25)/ PES的状态图。通过检测高Tg相(富含PES的相)引起的相分离引起的部分玻璃化,可以将LCST型异质区域细分为1区(无部分玻璃化的干扰)和2区(对玻璃的干扰)。富PES相的部分玻璃化)。异质区域的这种细分对混合混合物的再混合行为具有重大影响。在用PVME改性的DGEBA / MDA中,可以原位检测到反应诱导的相分离,伴随着反应速率的增加,接着是环氧胺相的玻璃化步骤。在非等温条件下,还观察到玻璃化后的扩散控制反应和系统的最终失透。

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