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Numerical Analysis of 3-D Microstructure of Coke Using Micro X-ray CT

机译:显微X射线CT对焦炭3-D微观结构的数值分析

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A finite element model of coke was generated using micro X-ray CT, and coke strength was numerically evaluated using its microstructure. First, three-dimensional (3-D) and two-dimensional (2-D) stress analyses of coke were compared. Next, 3-D stress analyses of cokes produced from caking coal and slightly caking coal were conducted in order to investigate the effect of the 3-D microstructure on coke strength. Furthermore, the strength anisotropy of coke was evaluated by stress analyses assuming a uniaxial tensile test in three directions. We found that the maximum principal stress magnitude and stress concentration area are smaller in the 3-D stress analysis than in the 2-D stress analysis. Moreover, the stress concentration area and strength anisotropy of coke produced from slightly caking coal are larger than those of coke produced from caking coal. The results indicate that stress analysis based on micro X-ray CT images is very useful for investigating the relationship between coke microstructure and strength.
机译:使用微型X射线CT生成焦炭的有限元模型,并使用其微观结构对焦炭强度进行数值评估。首先,比较了焦炭的三维应力(3-D)和二维应力(2-D)。接下来,为了研究3-D微观结构对焦炭强度的影响,对结块煤和轻度结块煤产生的焦炭进行了3-D应力分析。另外,通过在三个方向上进行单轴拉伸试验的应力分析来评价焦炭的强度各向异性。我们发现,在3D应力分析中,最大主应力大小和应力集中区域要比在2D应力分析中小。而且,由轻度结块的煤制得的焦炭的应力集中面积和强度各向异性大于由结块性煤制得的焦炭的应力集中面积和强度各向异性。结果表明,基于显微X射线CT图像的应力分析对于研究焦炭微观结构与强度之间的关系非常有用。

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