材料科学
热冲击
纳米复合材料
碳纤维
休克(循环)
化学工程
冶金
复合材料
复合数
医学
内科学
工程类
作者
Xiaochuan Chong,Peiyun Yan,Donghai Ding,Guoqing Xiao,Endong Jin,Changkun Lei,Chunzhuo Feng,Xing Hou
摘要
Abstract To enhance the thermal shock resistance of low‐carbon MgO–C refractories, SiC nanowires incorporated SiC/MgAl 2 O 4 composite reinforcer were introduced. The effect of SiC/MgAl 2 O 4 on the mechanical properties, thermal shock resistance, oxidation resistance and slag resistance of low‐carbon MgO–C refractories was explored. The results showed that the low‐carbon MgO–C sample incorporated with 9 wt.% SiC/MgAl 2 O 4 (M9) displayed optimal overall properties, with 28% higher residual strength ratio, 59% lower oxidation index, and 18% reduced corrosion area compared to the reference sample M0. The increased residual strength ratio is mainly attributed to the synergistic effect of SiC nanowires and rod‐shaped MgAl 2 O 4 , which facilitate crack deflection and branching, and energy dissipation through bridging and pull‐out mechanisms, collectively contributing to matrix toughening. Besides, M9 (3 wt.% graphite) demonstrates better mechanical strength, oxidation resistance, and slag resistance compared to high‐graphite samples (10 wt.% graphite), highlighting the significant potential of SiC/MgAl 2 O 4 composite reinforcer in developing sustainable low‐carbon refractories.
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