Abstract:
In order to adapt the demands for the lightweight of materials, MgAl
2O
4-CaAl
4O
7-CaAl
12O
19 (MA-CA
2-CA
6) composite was developed at 1 400-1 600℃ by addition of La
2O
3 micro powder, and the effect of La
2O
3 addition on sintering behavior, microstructure and mechanical properties of the composite was discussed. The results show that the added La
2O
3 dissolves to the CA
6 phases of MA-CA
2-CA
6 composite, causing the lattice distortion of CA
6 crystal, and the abnormal grain growth rate of CA
6 to be decelerated, resulting in a more equiaxed morphology instead of anisotropic growth to platelet structure, thereby further contributes to the elimination of pores located between the initial plate-like CA
6 grains. The disappearance of the platelet structures is favorable to Mg
2+ diffusion and thus indirectly promotes the development of MA grains, so the sintering activity of MA-CA
2-CA
6 composite is comprehensively promoted. As a result, the dense microstructure is obtained, with the apparent porosity decreases from 19.2% to 6.1% and the bulk density increases from 2.78 g/cm
3 to 3.18 g/cm
3 after presintering at 1 200℃ and sintering at 1 600℃ for 2 h by addition of 4wt% La
2O
3. In addition, a texture microstructure of the crystal phase, which includes MA, CA
2 and CA
6, is observed in the typical back-scattered electron (BSE) images of microstructures with 4wt% La
2O
3 content La
2O
3/MA-CA
2-CA
6 composite samples sintered at 1 600℃ for 2 h, which is considered to be favorable to improve the mechanical properties of MA-CA
2-CA
6 composite, and the cold compressive strength increases from 317 MPa to 501 MPa after presintering at 1 200℃ and sintering at 1 600℃ for 2 h by addition of 4wt% La
2O
3.