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A new ceramic composite based on spherical aluminium oxide for auxiliary panels in high-temperature firing processes

机译:一种基于球形氧化铝在高温烧制过程中辅助板的新型陶瓷复合材料

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based on a spherical form of aluminium oxide. It is intended to limit the occurrence of technological problems related to the appropriate selection of auxiliary refractory materials, such as cracking, high heat capacity and variable coefficient of thermal expansion. Design/methodology/approach: A composite ceramic material with the spherical form of aluminium oxide included allows to reduce mass and stabilize characteristics of dimensional changes as a function of temperature in auxiliary panels in high-temperature firing processes with typical manufacturing process of the ceramics, which is gravity casting, drying and high-temperature firing. Findings: The study showed that the quantitative share of the spherical form of Al2O3 in the volume of ceramic material has a major impact on its properties. An increased share of spheres translates into greater material porosity and lower matrix density but also, by reducing the cross-section, into decreased strength properties. In the case of the developed ceramic material, there is no visible trend of a decrease in the coefficient of thermal expansion with increasing temperature, which is the case with traditional ceramic materials. Research limitations/implications: The strength of presented composite isn’t good and constitutes a further direction of research and development of the material. Practical implications: Although decreased strength properties, the composite with no visible trend of a decrease in the coefficient of thermal expansion with increasing temperature could be used as panels in high-temperature firing processes. Originality/value: New ceramic foundry composite based on a spherical form of aluminium oxide for auxiliary panels in high temperature processes.
机译:基于球形氧化铝。 It is intended to limit the occurrence of technological problems related to the appropriate selection of auxiliary refractory materials, such as cracking, high heat capacity and variable coefficient of thermal expansion.设计/方法/方法:具有球形氧化铝的复合陶瓷材料包括,包括在具有典型制造过程的辅助板中的辅助板中的温度函数,减少质量并稳定尺寸变化的特性,具有陶瓷的典型制造过程,这是重力铸造,干燥和高温烧制。结果表明:该研究表明,陶瓷材料体积中Al2O3的球形形式的定量份额对其性质的主要影响。球体的增加的份额转化为更大的材料孔隙率和更低的基质密度,而且通过将横截面减小到降低的强度性质中。在开发陶瓷材料的情况下,由于传统陶瓷材料的情况下,热膨胀系数没有可见趋势。研究限制/影响:所提出的综合的强度并不好,并构成了材料的进一步研究和发展方向。实际意义:尽管强度性能降低,但由于高温烧制工艺中,无明显的热膨胀系数减少的可见趋势的复合材料可用作面板。原创性/值:基于高温过程中辅助板的铝氧化铝的球形形式的新型陶瓷铸造复合材料。

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