放电等离子烧结
材料科学
微观结构
烧结
复合材料
复合数
维氏硬度试验
粒度
等离子体
物理
量子力学
作者
Melis Kaplan Akarsu,Ipek Akin,Filiz Çınar Şahin,Gültekin Göller
摘要
Abstract The influence of two different spark plasma sintering (SPS)‐based processing routes (i.e., reactive SPS [RSPS] and nonreactive SPS) on the properties of TaB 2 ‐TaC composites was investigated. Ta 2 O 5 and B 4 C powders were used as starting materials in the RSPS method, and synthesis and densification of TaB 2 ‐TaC composites were accomplished in a facile single step. The effect of sintering temperature and time on the microstructure and densification of the in‐situ RSPS were investigated. The obtained results were compared with nonreactive spark plasma sintered TaB 2 ‐TaC composites. The highest densification (∼99.5%) was achieved for the TaB 2 ‐TaC composite with 6.64 vol.% TaC after reactive sintering at 1550°C under 40 MPa with a 5 min holding time. Although lower SPS temperature was used in the RSPS method, better densification and higher Vickers hardness were obtained compared to the nonreactive SPS. While platelet‐shaped TaC formation was observed in both processes, the average grain size was smaller in the RSPS method. On the other hand, no significant difference was detected in the oxidation behavior of the composites produced by RSPS and nonreactive SPS.
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