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首页> 外文期刊>Journal of the European Ceramic Society >Influence of thermal damage occurrence at microstructural scale on the thermomechanical behaviour of magnesia-spinel refractories
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Influence of thermal damage occurrence at microstructural scale on the thermomechanical behaviour of magnesia-spinel refractories

机译:微观结构尺度上热损伤的发生对氧化镁-尖晶石耐火材料热力学行为的影响

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摘要

Many refractory materials exhibit high thermal shock resistance, which is often mostly due to their high flexibility. Understand ing the microstructure key points allowing to develop a non-linear mechanical behaviour is of great relevance for future material improvements. The present work aims at optimising the processing of magnesia-spinel refractory materials close to industrial ones with simplified microstructures. The final goal is the investigation of the relationship existing between microstructure evolutions and induced thermomechanical properties. The thermal expansion mismatch which exists between the two phases (spinel inclusions and magnesia matrix) is expected to generate, during cooling, radial microcracks around the inclusions. The development of such microcracks network, closely related to the inclusions content, has been studied and the damage occurrence has been confirmed by several high temperature characterisation techniques. The influence of this thermal micro damage on the evolution of stress-strain law in tension of such materials has also been investigated.
机译:许多耐火材料表现出高的抗热震性,这通常主要是由于它们的高柔韧性。理解允许发展非线性机械性能的微观结构要点对于将来的材料改进具有重大意义。目前的工作旨在优化具有简化的微结构的接近工业用的氧化镁-尖晶石质耐火材料的加工。最终目标是研究微观组织演变与诱导的热机械性能之间存在的关系。预期在冷却过程中,两相(尖晶石夹杂物和氧化镁基质)之间存在的热膨胀失配会在夹杂物周围产生径向微裂纹。已经研究了与夹杂物含量密切相关的这种微裂纹网络的发展,并通过几种高温表征技术证实了损伤的发生。还已经研究了这种热微损伤对这种材料的拉伸应力-应变定律的演变的影响。

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