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Thermo-mechanical Monitoring of Composite Materials during the Pyrolysis of C/C Composites

机译:C / C复合材料热解过程中复合材料的热机械监测

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Conventional mechanical and structural properties allow to describe the complete composite material. They do, however, not describe the reaction during the pyrolysis process. The dynamic mechanical thermal analysis (DMTA) is a technique which is used to characterize materials. In particular, the DMTA method is used to observe the viscoelastic nature of polymers. Another interesting application area of the DMTA is the simulation of pyrolysis experiments to obtain carbon/carbon composites (C/C composites). The pyrolysis process of carbon-fiber-reinforced plastics (CFRP) was performed by means of inert gas (Ar, ambient pressure) under a defined time-temperature profile or alternatively approached by short time sweeps in a DMTA. So the temperature dependence of the elastic modulus (E-modulus) and of the internal damping (tan 5) are determined starting from the cured carbon-fiber-reinforced plastic to the transformed C/C composites. The analyses were applied for different matrix resins. The shown method improves the access to usually hidden mechanical and structural properties and requires further investigation of the entire polymerization and pyrolysis processes.
机译:常规的机械和结构性能可以描述完整的复合材料。但是,它们没有描述热解过程中的反应。动态机械热分析(DMTA)是一种用于表征材料的技术。特别地,DMTA方法用于观察聚合物的粘弹性。 DMTA的另一个有趣的应用领域是模拟热解实验以获得碳/碳复合材料(C / C复合材料)。碳纤维增强塑料(CFRP)的热解过程是通过惰性气体(Ar,环境压力)在规定的时间-温度曲线下进行的,或者通过在DMTA中进行短时间扫描来实现。因此,确定了弹性模量(E模量)和内部阻尼(tan 5)的温度依赖性,即从固化的碳纤维增强塑料到转变后的C / C复合材料。该分析适用于不同的基质树脂。所示的方法改善了通常隐藏的机械和结构性能,并需要对整个聚合和热解过程进行进一步研究。

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