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Mechanical Properties and Microstructure Fractal Analysis of Refractory Bauxite Concrete

机译:耐火铝土矿混凝土的力学性能和微观分形分析

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The surface topography analysis via fractals as a means of explanation of composite materials mechanical and microstructural characteristics has hardly been reported so far. This study proposes a method of fractal analysis and its application to refractory bauxite concrete surface tribological investigation. Fractal dimension, profilegrams and fast Fourier transform method are introduced and supported by the adequate software for analysing contours and surface roughness, depending on the observation scale and also numerically depending on horizontal lines intercepted by the investigated profile. Also, the Richardson method and Kaye modification are applied to distinguish textured and structured aspect of grain contour geometry. Microstructural investigation was carried out using a scanning electron microscope. Using the fractals of the grains contact surfaces, a reconstruction of microstructure configuration, as grains shapes or inter-granular contacts, has been performed. Obtained results indicated that fractal analyses of contact surfaces of different shapes were very important for the prognosis of the concrete behaviour. The novel approach to the investigation of refractory concrete properties was successfully conducted, as a result introducing fractal identification as a means of composite materials performances evaluation.
机译:迄今为止,几乎没有报道过通过分形进行表面形貌分析以解释复合材料的机械和微观结构特征的方法。本研究提出了一种分形分析方法,并将其应用于耐火铝土矿混凝土表面摩擦学研究。分形维数,轮廓图和快速傅立叶变换方法已引入并由适当的软件支持,该软件可用于分析轮廓和表面粗糙度,具体取决于观测范围,也取决于在数值上取决于所研究轮廓截取的水平线。此外,理查森方法和Kaye修改应用于区分晶粒轮廓几何的纹理和结构方面。使用扫描电子显微镜进行微观结构研究。使用晶粒接触表面的分形,已经进行了微观结构构型的重建,如晶粒形状或晶间接触。所得结果表明,不同形状的接触面的分形分析对于混凝土行为的预后非常重要。成功地进行了研究耐火混凝土性能的新方法,结果引入了分形识别作为复合材料性能评估的手段。

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