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Effect of Micro SiC Addition on the Microstructure and Thermal Shock Resistance of 3D Printed Mullite Contained Ceramics

机译:微SiC添加对3D印花莫来石体结构和热抗冲击性陶瓷的影响

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Currently, mullite contained ceramics printed by DIW 3D printing cannot be used in a high temperature environment for multicycle. In the fields of environmental protection and filtration of high-temperature flue gas, 3D printed mullite contained ceramics is in widely demanded owing to the variety of structures. Thus, application of these products have been limited due to their low thermal shock resistance. In order to improve the thermal shock resistance of 3D printed mullite contained ceramics for high-temperature flue gas filter, in this work, the effect of SiC micron particles addition on the thermal shock resistance was investigated. The thermal shock behavior of 3D printed mullite ceramics was explored using a conventional water quenching technique. Furthermore, XRD and SEM were used for determining phase composition and microstructure evaluation, respectively.
机译:目前,莫来石用DIW 3D打印印刷的陶瓷不能用于多运费的高温环境中。 在高温烟气的环境保护和过滤领域,由于各种结构,3D印刷莫来石陶瓷陶瓷被广泛要求。 因此,由于其低热抗冲击性,这些产品的应用受到限制。 为了提高3D印花莫来石的热抗震性陶瓷用于高温烟气过滤器,在这项工作中,研究了SiC微米颗粒添加对热抗震性的影响。 使用传统的水猝灭技术探索了3D印刷莫来石陶瓷的热冲击行为。 此外,XRD和SEM分别用于确定相组合物和微观结构评估。

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