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Thermal shock criteria of refractory ceramics: limitations of conventional analyses and some numerical approaches to improve the prediction of the resistance to thermal shock

机译:耐火陶瓷的热冲击准则:常规分析的局限性和一些改进对热冲击性能的预测的数值方法

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Significant advances in the mechanical design of ceramic parts were realized since the pioneer works of Kingery and Hasselman to define thermal shock resistance. But for high heterogeneous refractories and contrasted local phase properties the use of these criteria is not always convincing because the assumptions made are too simplicist.First, we underline how thermal shock resistance parameters helped to improve the global performance of ceramics and make some comments on their limitations for refractory materials. Then we show how numerical tools are useful for the design of refractory structures at high temperatures through several approaches we have developed for refractory structures: prediction of macroscopic thermal shock resistance of heterogeneous refractories using multi-scale analysis, finite element methods applied to a specific structure considering either a two-scale approach to describe the thermo-elastic quasi brittle behavior of heterogeneous materials, at the macroscopic scale approach considering homogeneous microstructure.
机译:自从Kingery和Hasselman定义耐热冲击性的开创性工作以来,陶瓷零件的机械设计取得了重大进步。但是对于高均质耐火材料和局部相对比的材料,使用这些标准并不总是令人信服,因为所做的假设太简单了。首先,我们强调了抗热震性参数如何帮助改善陶瓷的整体性能,并对它们的性能提出了一些意见耐火材料的局限性。然后,我们通过我们为耐火材料结构开发的几种方法,展示了数值工具如何用于高温耐火材料结构的设计:使用多尺度分析预测非均质耐火材料的宏观耐热冲击性,将有限元方法应用于特定结构考虑采用两种尺度的方法来描述异质材料的热弹性准脆性,而采用宏观尺度的方法则考虑均质的微观结构。

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