Complex Metal Matrix Composites Produced by Powder Metallurgy from Core–Shell Powders
Angelina Strakošová, Drahomír Dvorský, Filip Průša, Andrea Školáková, Jakub Svoboda, Stanislav Habr, Pavel LejčekThis study investigates the possibility of producing complex metal matrix composites (CMMCs) via powder metallurgy. Two types of powders, a mixture of core–shell Cu@Ag+W@Ag powder and dual core–shell W@(Cu@Ag) powder, have been successfully sintered using spark plasma sintering at 700 °C/5 min, forming Ag–(W+Cu) and Ag–(W@Cu) CMMCs, respectively. Scanning electron microscopy study revealed that both Ag–(W@Cu) and Ag–(W+Cu) CMMCs are characterized by a complex microstructure consisting of Ag matrix reinforced with W@Cu core–shell and a mixture of Cu+W particulates, respectively. The compression tests showed that Ag–(W@Cu) CMMC is characterized by the highest compression yield strength (CYS, 201 MPa) compared to pure Ag (27 MPa) or other counterparts (such as Ag–W, Ag–Cu). On the other hand, Ag–(W+Cu) CMMC exhibits a lower CYS value (150 MPa) by approximately 25% compared to Ag–(W@Cu) CMMC; while its tensile yield strength (TYS) reaches 99 MPa, which is 98% higher than the TYS of pure Ag (50 MPa).