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Low temperature mullite forming pre-ceramic resins of high ceramic yield for oxide matrix composites

机译:用于氧化物基复合材料的高陶瓷收率低温莫来石成型预陶瓷树脂

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? 2022 Elsevier Ltd and Techna Group S.r.l.Monophasic mullite precursors, namely aluminosiloxanes were synthesized by a novel synthetic route, in which co-hydrolysis and condensation of aluminium tri secbutoxide and tetraethoxy silane was achieved in presence of con. HCl in a non-polar medium. Aluminosiloxanes were characterized by FT-IR, NMR, and elemental analyses. Spectral analysis confirms the presence of Si-O-Al bonds in all the samples and also validates the incorporation of more aluminium via Si-O-Al bonds with increasing Al/Si mole ratio in the precursor. These FT-IR and NMR data also attest the precursor level homogeneity in all the samples. The aluminosiloxanes are obtained as low viscous resins and are capable of giving high ceramic residue qualifying them as ceramic matrix precursors for CMCs. The effect of Al/Si ratio on the ceramic conversion was studied. All the precursors showed the formation of mullite at 1000 °C. This low temperature mullite formation is a key factor in developing oxide CMCs without fiber damage. The results obtained from the study show that the composition of the ceramic can be controlled between a silica rich mullite phase and near-stoichiometric mullite phase by suitably selecting the Al/Si monomer feed ratio of the precursors. This aspect provides a greater scope for designing application-specific ceramic matrices for space applications.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.通过一种新的合成路线合成了单相莫来石前驱体,即铝硅氧烷,其中三仲丁醇铝和四乙氧基硅烷在非极性介质中存在 HCl 的情况下实现了共水解和缩合。通过傅里叶变换红外光谱(FT-IR)、核磁共振(NMR)和元素分析对铝硅氧烷进行了表征。光谱分析证实了所有样品中都存在Si-O-Al键,并且还验证了随着前驱体中Al/Si摩尔比的增加,通过Si-O-Al键掺入了更多的铝。这些傅立叶变换红外和核磁共振数据也证明了所有样品中母离子水平的均匀性。铝硅氧烷以低粘度树脂形式获得,能够产生高陶瓷残留物,使其成为CMC的陶瓷基体前驱体。研究了Al/Si比对陶瓷转化率的影响。所有前驱体均在1000°C时形成莫来石。 这种低温莫来石的形成是形成氧化物CMC而不会造成纤维损伤的关键因素。研究结果表明,通过适当选择前驱体的Al/Si单体进料比,可以在富二氧化硅莫来石相和近化学计量莫来石相之间控制陶瓷的组成。这方面为设计用于空间应用的特定应用陶瓷矩阵提供了更大的空间。

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