放电等离子烧结
材料科学
微观结构
维氏硬度试验
陶瓷
粒度
烧结
热膨胀
相对密度
分析化学(期刊)
石墨
晶粒生长
热导率
大气温度范围
复合材料
化学
物理
色谱法
气象学
作者
Yunhui Niu,Shuai Fu,Kuibao Zhang,Bo Dai,Haibin Zhang,Salvatore Grasso,Chunfeng Hu
标识
DOI:10.1007/s40145-020-0412-7
摘要
Abstract The synthesis, microstructure, and properties of high purity dense bulk Mo 2 TiAlC 2 ceramics were studied. High purity Mo 2 TiAlC 2 powder was synthesized at 1873 K starting from Mo, Ti, Al, and graphite powders with a molar ratio of 2:1:1.25:2. The synthesis mechanism of Mo 2 TiAlC 2 was explored by analyzing the compositions of samples sintered at different temperatures. It was found that the Mo 2 TiAlC 2 phase was formed from the reaction among Mo 3 Al 2 C, Mo 2 C, TiC, and C. Dense Mo 2 TiAlC 2 bulk sample was prepared by spark plasma sintering (SPS) at 1673 K under a pressure of 40 MPa. The relative density of the dense sample was 98.3%. The mean grain size was 3.5 μm in length and 1.5 μm in width. The typical layered structure could be clearly observed. The electrical conductivity of Mo 2 TiAlC 2 ceramic measured at the temperature range of 2–300 K decreased from 0.95 × 10 6 to 0.77 × 10 6 Ω–1·m–1. Thermal conductivity measured at the temperature range of 300–1273 K decreased from 8.0 to 6.4 W·(m·K) –1 . The thermal expansion coefficient (TEC) of Mo 2 TiAlC 2 measured at the temperature of 350–1100 K was calculated as 9.0 × 10 –6 K –1 . Additionally, the layered structure and fine grain size benefited for excellent mechanical properties of low intrinsic Vickers hardness of 5.2 GPa, high flexural strength of 407.9 MPa, high fracture toughness of 6.5 MPa·m 1/2 , and high compressive strength of 1079 MPa. Even at the indentation load of 300 N, the residual flexural strength could hold 84% of the value of undamaged one, indicating remarkable damage tolerance. Furthermore, it was confirmed that Mo 2 TiAlC 2 ceramic had a good oxidation resistance below 1200 K in the air.
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