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MODULATED DIFFERENTIAL SCANNING CALORIMETRY TO STUDY REACTING POLYMER SYSTEMS

机译:调制差分扫描量热法研究反应聚合物系统

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Modulated (temperature) differential scanning calorimetry (MTDSC or MDSC) is used to study simultaneously the evolution of heat flow and heat capacity for the isothermal and non-isothermal reactions of polymer systems. An epoxy-anhydride thermosetting system is treated as an example. Vitrificatrion and devitrification steps are observed. The heat flow phase during isothermal and non-isothermal cure is always small, but its evolution contains information on relaxation phenomena, vitrification and devitrification, in the course of the chemical reaction. Modelling of the (heat flow related) chemical kinetics and the (heat capacity related) mobility restrictions contributes to a better understanding of the reaction mechanism and reaction kinetics up to a high degree of chemical conversion. The use of MTDSC as a tool for a quantitative construction of the vitrification curve in Temperature-Time-Transformation (TTT) and Continuous-Heating-Transformation (CHT) diagrams is illustrated.
机译:调制(温度)差示扫描量热法(MTDSC或MDSC)用于同时研究热流和热容量的进化,用于聚合物系统的等温和非等温反应。将环氧酐热固性系统作为实例进行治疗。观察到福利式和缺失步骤。等温和非等温固化期间的热流相总是很小,但其进化含有关于放松现象,玻璃化和缺乏的信息,在化学反应过程中。 (热流相关)化学动力学的建模和(热能相关)移动限制有助于更好地理解反应机制和反应动力学高达高度的化学转化。示出了使用MTDSC作为温度 - 时变(TTT)和连续加热变换(CHT)图的玻璃化曲线的定量构造的工具。

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