Carbon nanomaterials (graphene and carbon nanotubes) possessing excellent mechanical properties, outstanding thermodynamic stability, and superior electrical conductivity, are regarded as the ideal reinforcement for metal matrix composites. The employment of carbon nanomaterials in the magnesium alloy composites help to overcome the low strength, hardness, and modulus of magnesium alloys. However, due to the paucity of chemical reactions between magnesium and carbon nanomaterials and their poor wettability, the interfacial strength between the two materials is weak, thereby limiting the performance of the reinforcement. The utilization of interfacial regulatory substances is a conventional approach to enhancing the bonding strength at the interface of composite materials. This paper mainly introduces the preparation methods and types of interfacial regulatory materials for carbon nanomaterials reinforced magnesium matrix composites; focuses on the methods of adding interfacial regulatory substances to the composites, the interfacial bonding of interfacial regulatory substances to reinforcement and matrix, and the mechanism of improving the interfacial bonding strength of the composite materials.
王晓军,孙友朋,李雪健,施海龙,胡小石,徐超,卢振. 碳纳米材料增强镁基复合材料界面调控的研究进展[J]. 航空制造技术, 2024, 67(22): 42-51.
WANG Xiaojun, SUN Youpeng, LI Xuejian, SHI Hailong, HU Xiaoshi, XU Chao, LU Zhen. Research Progress in Interface Tailoring of Carbon Nanomaterial Reinforced Magnesium Matrix Composites[J]. Aeronautical Manufacturing Technology, 2024, 67(22): 42-51.