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Mechanical Properties of Mo-Nb-TiC In-situ Composites Synthesized by Hot-Pressing

机译:热压合成Mo-Nb-TiC原位复合材料的力学性能

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Mo-40 mol percent TiC and Mo-20 mol percent Nb-40 mol percent TiC in-sin' composites were synthesized by hot-pressing mixed Mo, Nb and TiC powders. Both composites consist of two phases. Mo solid solution (A2) and TiC (B1), after hot-pressing at 2073 K and 70 MPa for 2 h followed by annealing at 2073 K for 24 h. Porosity of hot-pressed compacts decreased by Nb addition to Mo-40 mol percent TiC. The composites have different microstructural features. Clusters consisting of fine bcc particles are observed in sizes similar to original Nb powder in Mo-20 mol percent Nb 40 mol percent TiC, while there are no clusters in Mo-40 mol percent TiC. These composites show excellent strength superior to monolithic TiC at high temperatures. The addition of Nb to Mo-40 mol percent TiC suppresses effectively intergranular fracture above 1473K. Furthermore, fracture toughness of these composites is higher than that of monolithic TiC. Fracture toughness of Mo-20 mol percent Nb-40 mol percent TiC is slightly lower than that of Mo-40 mol percent TiC. The obtained results are discussed in relation to microstructural characteristics.
机译:通过热压混合的Mo,Nb和TiC粉末来合成Mo-40摩尔百分比的TiC和Mo-20摩尔百分比的Nb-40摩尔百分比的TiC insin'复合材料。两种复合材料均包含两个阶段。 Mo固溶体(A2)和TiC(B1)在2073 K和70 MPa下热压2小时,然后在2073 K下退火24小时。通过向Mo-40摩尔%TiC中添加Nb可以降低热压成型坯的孔隙率。复合材料具有不同的微观结构特征。在Mo-20摩尔%Nb 40摩尔%TiC中观察到大小与原始Nb粉末相似的簇,由bcc细颗粒组成,而Mo-40摩尔%TiC中没有簇。这些复合材料在高温下表现出优于整体式TiC的优异强度。在Mo-40摩尔百分比的TiC中添加Nb可有效抑制1473K以上的晶间断裂。此外,这些复合材料的断裂韧性高于整体式TiC。 Mo-20mol%Nb-40mol%TiC的断裂韧性略低于Mo-40mol%TiC的断裂韧性。讨论了与微观结构特征有关的结果。

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