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Microcracks with unexpected characteristics induced by CTE mismatch in two-phase model materials

机译:两相模型材料中CTE不匹配引起的具有意想不到的特性的微裂纹

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摘要

In order to study model microstructures representative of industrial refractory materials, this work is devoted to the elaboration and microstructural characterisation of two-phase model materials able to develop interfacial damage by thermal expansion mismatch between the matrix and inclusions. The studied materials are composed of a vitreous matrix surrounding dense alumina balls (Al_2O_3 99.9%). As expected, because of the not null dilatometric dissension (Δα < 0 with α_(matrix) < α_(inclusions)), all the samples exhibit partial decohesions at the matrix-inclusions interfaces. But one also observes the presence of two types of unexpected cracks: straight cracks in the median plane between two inclusions and circular cracks around inclusions. Numerical, analytical and experimental tools were used to study the origin of such unexpected defects.
机译:为了研究代表工业耐火材料的模型微结构,这项工作致力于对两相模型材料的细化和微观结构表征,该材料能够通过基体和夹杂物之间的热膨胀失配而产生界面破坏。研究的材料由围绕致密氧化铝球(Al_2O_3 99.9%)的玻璃状基质组成。如预期的那样,由于非零膨胀差异(Δα<0,α_(矩阵)<α_(包含)),所有样本在矩阵-包含物界面处表现出部分分离。但是,人们还观察到了两种类型的意外裂纹的存在:两个夹杂物之间的中间平面中的直形裂纹和夹杂物周围的圆形裂纹。使用数值,分析和实验工具来研究此类意外缺陷的来源。

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