放电等离子烧结
材料科学
增韧
陶瓷
复合数
复合材料
等离子体
烧结
韧性
物理
量子力学
作者
Zepei Du,Mingdong Yi,Shibing Chen,Jingjie Zhang,Guangchun Xiao,Zhaoqiang Chen,Hui Chen,Chonghai Xu
摘要
For addressing the issue of low relative density, poor fracture toughness of boron carbide ceramics, CNTs-reinforced B4C-SiC ceramic composite material was prepared via spark plasma sintering( SPS), and the impact of CNTs on the strengthening and toughening of B4C-SiC ceramic composite material was analyzed. The evidence revealed that an appropriate amount of CNTs can enhance the discharge effect and improve the compactness of the composite, and only B4C, SiC and CNTs phases exist after the sintering. As the CNTs content increased, the flexural strength and fracture toughness took on a tendency to first rise and then drop. After mixing 0.5 wt.% CNTs, the flexural strength and fracture toughness were 499 MPa and 5.38 MPa·m1/2, which increased by 59.4% and 28.4%, respectively. The transformation of fracture mode, grain refinement, crack propagation mode, bridging and pulling-out of CNTs efficiently enhance the mechanical properties of B4C-SiC ceramic composite material.
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