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Kinetic analysis of the thermal decomposition of a carbon fibre-reinforced epoxy resin laminate

机译:碳纤维增强环氧树脂层压板热分解的动力学分析

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Kinetic decomposition model of a carbon-reinforced epoxy laminate (T700/M21 composite) applied to aircraft structures were determined from specific techniques. Data obtained from the thermogravimetric (TG) experiment coupled with Fourier Transform Infrared (FTIR) spectrometer and combined with the NETZSCH Thermokinetics numerical tool were used to determine a comprehensive kinetic model. Experimental and numerical approaches were thus coupled to determine the decomposition mechanism of a partially unknown composite (T700/M21). Using Thermokinetics, a multi-step reactions kinetic model was established based on the TG and differential thermogravimetric (DTG) results. It is composed of two main competitive reaction, e.g. n(th) order and autocatalytic reactions). New approach combining TG-FTIR-Thermokinetics is proposed to make kinetic analysis of complex carbon fibre reinforced epoxy composite (mixture of epoxy resins blended with different thermoplastic polymers).
机译:通过特定技术确定了应用于飞机结构的碳增强环氧层压板(T700 / M21复合材料)的动力学分解模型。使用从热重(TG)实验,傅立叶变换红外(FTIR)光谱仪以及NETZSCH热动力学数值工具组合获得的数据来确定综合动力学模型。因此,通过实验和数值方法进行耦合,以确定部分未知复合物(T700 / M21)的分解机理。利用热动力学,基于TG和差示热重分析(DTG)结果建立了多步反应动力学模型。它由两个主要的竞争反应组成,例如n(th)阶和自催化反应)。提出了一种结合TG-FTIR-热动力学的新方法来对复杂的碳纤维增强的环氧复合材料(环氧树脂与不同热塑性聚合物的混合物)进行动力学分析。

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