材料科学
放电等离子烧结
复合材料
断裂韧性
微观结构
色散(光学)
等离子体
烧结
腐蚀
量子力学
生物
光学
物理
古生物学
作者
Sandan Kumar Sharma,Kapil Chaudhary,Yashpal Gupta,Mitjan Kalin,B. Venkata Manoj Kumar
摘要
Abstract Spark plasma sintering of SiC‐10, 20, or 30 wt% TaC composites was performed at 1800°C. Microstructures of sintered composites revealed uniform dispersion of TaC particles in SiC matrix. With the increase in TaC content, hardness decreased from 25.75 to 23.30 GPa and fracture toughness increased from 3.48 to 3.85 MPa m 1/2 . Erosion testing was performed to evaluate the potential of sintered composites at room temperature and 400°C by a stream of SiC particles impinging at different angles (30°, 60°, or 90°). The erosion rate varied from 25 to 166 mm 3 /kg, with change in TaC content, impingement angle, or temperature. The erosion rate increased as the angle of impingement and temperature increased, but reduced when the TaC concentration increased. Worn surfaces revealed that the material was dominantly removed via fracture of SiC grains and TaC particles pull‐out. SiC‐30 wt% TaC composites exhibited superior erosive wear resistance at low impingement angle and room temperature.
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