Cui-ju Wang, Ao-Hua Su, Kun-Kun Deng, Xue-Jian Li, Zi-long Zheng, Kai-bo Nie
In this work, the SiC p /AZ91 composites prepared by freeze casting were subjected to hot extrusion, and then the microstructure, mechanical properties and fracture behavior were given and analyzed. The results showed that, after extrusion, the particle distribution of SiC p /AZ91 composites changed from lamellar to uniform distribution, which significantly improved the mechanical properties of the composites. With increasing volume fraction of SiC p , the thermal expansion coefficient of the as-extruded SiC p /AZ91 composites decreased significantly, accompanied by the improvement in elastic modulus. When the content of SiC p was 25 vol.%, the UTS and elastic modulus of the composite reached ~513 MPa and ~91 GPa, respectively, which exhibited the best combination of tensile strength and modulus. During the loading process, microcracks were more likely to initiate at the interface between the SiC p and magnesium matrix, and excessive SiC p could aggravate the stress concentration at the interface significantly, which led to the interconnection of microcracks and failure of the composite.