Abstract:
Nano-SiC-ZrO
2/MoSi
2 composite ceramics were prepared by hot-pressed sintering. The microstructures and properties were investigated using X-ray diffractometer, scanning electron microscope and mechanical properties testing. The results show that the addition of nano-ZrO
2 and nano-SiC particles can refines the grain of MoSi
2 matrix effectively. The SiC-ZrO
2 synergism is advantageous to enhance the bending strength and fracture toughness of the MoSi
2 matrix ceramic, and the effect of nano-SiC on refining and strengthening the MoSi
2 matrix is better than that of nano-ZrO
2 in the synergistic phase. The bending strength and fracture toughness of 20vol%SiC+10vol%ZrO
2+MoSi
2 improve 280% and 140% respectively compared with the MoSi
2 matrix. Different dislocation configurations are found around the particles in the ceramic matrix. ZrO
2 produces dislocation in the matrix depending on the volume effect caused by its own phase transitions. The second particles pining dislocation include SiC particles and non-phase-transformed ZrO
2 particles. The pining effect of dispersed phases on the dislocation in the composite ceramics is obvious, especially the intragranular type SiC and ZrO
2 particles.