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Oxidation-induced microstructural changes of a polymer-derived Nextel~(TM) 610 ceramic composite and impact on the mechanical performance

机译:聚合物衍生的Nextel〜(TM)610陶瓷复合材料的氧化诱导微观结构变化及其对机械性能的影响

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摘要

This study analyses the effects of heat treatments in oxidative atmosphere on the mechanical and microstructural properties of a fiber-reinforced weak interface composite (UMOX~(TM)) which is composed of a mullite-SiOC matrix and Nextel~(TM) 610 fibers with fugitive coatings. Composites of different porosity grades, depending on the polymer infiltration and pyrolysis cycle, are exposed to 1000 and 1200 ℃ for 50 h. The exposure provokes the formation of silica, which leads to matrix densification and the c of silica bridges at the fiber-matrix interface, resulting in an increased interfacial bonding strength. Consequently, the fracture toughness and the flexural strength are significantly reduced. The study confirms that SiOC-based materials are suitable for an application at high temperatures in oxygen-rich atmospheres up to 1000 ℃. It is, however, important to consider the microstructural changes and thereby induced decrease of the overall mechanical performance during a hightemperature use.
机译:这项研究分析了氧化气氛中的热处理对纤维增强的弱界面复合材料(UMOX〜(TM))的力学和微观结构性能的影响,该复合材料由莫来石-SiOC基质和Nextel〜(610)纤维组成,逃犯性涂料。根据聚合物的渗透和热解周期,将不同孔隙率等级的复合材料暴露于1000和1200℃下50 h。暴露会引起二氧化硅的形成,从而导致基体致密化和二氧化硅在纤维-基体界面的桥连,从而提高了界面粘合强度。因此,断裂韧性和抗弯强度显着降低。研究证实,基于SiOC的材料适合在高达1000℃的富氧气氛中高温应用。然而,重要的是要考虑微观结构的变化,从而在高温使用过程中引起整体机械性能的下降。

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