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To synergistically enhance the strength, plasticity, and corrosion resistance of particle-reinforced magnesium matrix composites (MMCs), this study employed the electro-explosion deposition method to modify the surface of Ti particles with nano-Al, and prepared Al@Ti particle-reinforced ZK80 (Mg-8Zn-0.5Zr) MMCs. The results indicate that the Al@Tip/ZK80 composites exhibits excellent mechanical properties. Compared with ZK80, its yield strength, tensile strength, and elongation are increased by 17%, 12%, and 23% respectively. The strengthening mechanism is that the Ti3Al phase formed in-situ by the modified layer during the melting process enhances the interfacial bonding. Meanwhile, the Al@Tip/ZK80 composite demonstrates superior corrosion resistance. Compared with Tip/ZK80, the hydrogen evolution amount is reduced by 67%, and the corrosion current density is decreased to 213 µA/cm2, a reduction of 52%. This work achieved the simultaneous improvement of strength, plasticity, and corrosion resistance by regulating the Ti/Mg interface, providing a new strategy to address the micro-galvanic effect in MMCs.
This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/)
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