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Characterization of the Mechanical Behavior of Magnesia Spinel Refractories Using Image Correlation

机译:利用图像相关表征镁尖晶石耐火材料的力学行为

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摘要

The improvement in thermal shock resistance of refractory materials is among the crucial properties that interest researchers and industrials. The "flexibility" in terms of large strain-to-rupture is, up to now, an important parameter to develop such characteristic. This can be obtained by generating a network of microcracks within the microstructure of the material under mechanical solicitations. As an outcome, the mechanical behavior can vary from fragile to a large nonlinear one depending on the degree of microcracking present inside the material. In fact, this nonlinear behavior of ceramics related to their microstructure is behind the possibility to enhance the level of strain-to-rupture for a better accommodation to the high level of strain induced by thermal shock solicitations. This study is devoted to apply digital imaging correlation method to support mechanical behavior analysis for the evaluation of the thermal shock ability of refractory materials. In this paper, mechanical characterization of magnesia spinel materials has been carried out using different experimental tests. These nonlinear materials are characterized by a mechanical behavior strongly dependent on their microstructure.
机译:耐火材料耐热冲击性的提高是研究人员和工业界关注的关键特性之一。迄今为止,就大的断裂应变而言,“柔韧性”是形成这种特性的重要参数。这可以通过在机械诱导下在材料的微结构内生成微裂纹网络来实现。结果,取决于材料内部存在的微裂纹的程度,机械行为可能会从脆弱变为非线性。实际上,与陶瓷的微观结构有关的这种非线性行为是可能的,它提高了应变断裂的水平,以更好地适应由热冲击引起的高应变。本研究致力于应用数字成像相关方法来支持机械性能分析,以评估耐火材料的热冲击能力。在本文中,已使用不同的实验测试对氧化镁尖晶石材料进行了机械表征。这些非线性材料的特征是其机械性能强烈取决于其微观结构。

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