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Thermomechanical Characterisation of Mullite Zirconia Composites Sintered from Andalusite for High Temperature Applications

机译:红柱石烧结高温莫来石氧化锆复合材料的热力学表征

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Mullite-Zirconia refractories are well known for their good resistance to corrosion and thermal shock. In this study, several mullite-zirconia composites were developed from andalusite, alumina and zircon sintered at 1600 C for 10 hours. The samples were subjected to thermal shock carried out after heating at 1200 C, in order to study the mechanical and thermomechanical behaviour as a function of the amount of zirconia dispersed in the mullite matrix. It appears that that the amorphous phase (SiO2), determined by X-ray diffraction, produced by the decomposition of andalusite, increases considerably with the amount of final zirconia in the composite and has a very important influence on the porosity. This amorphous phase seems also to have an important influence on the mechanical properties of the material. The characterisation of the thermomechanical behaviour (elastic properties and damage monitoring) was carried out thanks to ultrasonic techniques (US echography and Acoustic Emission). The 'surprising' evolution (increase) of the Young's modulus E of the material after being submitted to repeated thermal shocks is highlighted and explained. The acoustic emission technique carried out at high temperature and also coupled to 4-points bending tests (at room temperature) demonstrates its effectiveness for providing a better understanding of the chronology of the involved mechanisms involved at microstructural scale.
机译:莫来石-锆石耐火材料以其良好的耐腐蚀性和热冲击性而闻名。在这项研究中,由红柱石,氧化铝和锆石在1600℃下烧结10小时开发了几种莫来石-氧化锆复合材料。为了研究作为分散在莫来石基体中的氧化锆的量的函数的机械和热机械行为,样品在1200℃加热后经受热冲击。看来,由红柱石分解产生的由X射线衍射确定的非晶相(SiO2)随着复合物中最终氧化锆的增加而显着增加,并且对孔隙率有非常重要的影响。这种无定形相似乎也对材料的机械性能具有重要影响。热力学行为(弹性性能和损伤监测)的表征归功于超声技术(美国回波描记法和声发射)。突出并说明了反复受到热冲击后,材料的杨氏模量E的“令人惊讶”的演变(增加)。在高温下进行的声发射技术,还与四点弯曲测试(在室温下)相结合,证明了它的有效性,可以更好地了解微观结构范围内所涉及机制的时序。

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