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Mechanical behavior and thermal shock resistance of MgO-C refractories: Influence of graphite content

机译:MgO-C耐火材料的力学行为和热抗冲击性:石墨含量的影响

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摘要

The mechanical and thermo-mechanical properties of MgO-C refractories are of major importance in the industrial applications, and highly depend on the optimization of their microstructural design. In the present work, the influence of flaky graphite content on mechanical behavior and thermal shock resistance of such refractories was investigated with the aid of the wedge splitting test, fractal and microscopic fractographic analysis. The results showed that the increase of graphite content in the specimens led to an enhanced nonlinear fracture behavior, a reduced nominal notch tensile strength (sigma(NT)), and a higher specific fracture energy (G(f)), characteristic length (l(ch),) and thermal shock resistance parameter (R-st). The fractal analysis of the crack propagation path of the specimens after the wedge splitting test indicated that increasing graphite content in the refractories can enhance their irregularity of the crack propagation path during fracture. Also, it was suggested from microscopic fractographic analysis that the improvement of thermal shock resistance of MgO-C refractories was positively correlated with the increase of interface crack propagation.
机译:MgO-C耐火材料的机械和热机械性能在工业应用中具有重要意义,高度取决于它们的微观结构设计的优化。在目前的工作中,借助于楔形分裂试验,分形和微观的法式分析,研究了片状石墨含量对这种耐火材料的机械行为和热抗冲击性的影响。结果表明,试样中石墨含量的增加导致了增强的非线性断裂行为,称义凹口拉伸强度(Sigma(NT))和较高的特异性裂缝能量(G(F)),特征长度(L. (CH),)和热抗冲击参数(R-ST)。楔形分裂试验后试样裂纹传播路径的分形分析表明,在骨折期间增加耐火材料中的石墨含量可以增强它们的裂纹传播路径的不规则性。此外,有人提出了显微法式分析,即MgO-C耐火材料的热抗冲击性的提高与界面裂纹传播的增加呈正相关。

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