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Effects of sintering temperature on mechanical properties of 3D mullite fiber (ALF FB3) reinforced mullite composites

机译:烧结温度对3D莫来石纤维(ALF FB3)增强莫来石复合材料力学性能的影响

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摘要

A new method to weaken the interfacial bonding and increase the strength of 3D mullite fiber reinforced mullite matrix (Mu_f/Mu) composites is proposed and tested in this paper. Firstly, Mu_f/Mu composites were fabricated through sol-gel process with varied sintering temperature. Then, the effects of sintering temperature on mechanical properties of the composites were tested. As sintering temperature was raised from 1000 °C to 1300 °C, the three-point flexural strength of the composites firstly decreased from 66.17 MPa to 41.83 MPa, and then increased to 63.17 MPa. In order to explain the relationship between composite strength and sintering temperature, morphology and structure of the mullite fibers and mullite matrix after the same heat-treatment as in the fabrication conditions of the composites were also investigated. Finally, it is concluded that this strength variation results from the combined effects of matrix densification, interfacial bonding and fiber degradation under different sintering temperatures.
机译:提出并测试了一种弱化3D莫来石纤维增强莫来石基质(Mu_f / Mu)复合材料的界面结合并提高强度的新方法。首先,通过改变烧结温度的溶胶-凝胶法制备了Mu_f / Mu复合材料。然后,测试了烧结温度对复合材料力学性能的影响。随着烧结温度从1000°C升高到1300°C,复合材料的三点弯曲强度首先从66.17 MPa降低到41.83 MPa,然后增加到63.17 MPa。为了解释复合强度与烧结温度之间的关系,还研究了在与复合材料的制造条件相同的热处理后,莫来石纤维和莫来石基体的形态和结构。最后,得出的结论是,这种强度变化是由于在不同的烧结温度下基体致密化,界面粘结和纤维降解的综合作用造成的。

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