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Microstructure and mechanical properties of microwave-sintered Ni-alloyed Ti3SiC2/graphene co-reinforced lamellar porous Fe-7.5Cu composites

Deng, Ailun; Shu, Rui ; Sun, Hongliang; Wu, Zixuan; Yang, Liu 1; Hui, David; Jiang, Xiaosong
1 Institut für Angewandte Materialien – Werkstoffkunde (IAM-WK), Karlsruher Institut für Technologie (KIT)

Abstract:

Porous Fe-Cu alloys are crucial for frictional applications such as bearings and gears, where their low density and porosity are advantageous for lubrication. However, the inherent microstructural defects hinder the achievement of high strength and ductility under harsh conditions, limiting their durability and widespread application. This study aims to address this deficiency through the synergistic optimization of Ni alloying and dual-phase reinforcements within biomimetic layered structures. The method combines microwave sintering with flake powder metallurgy technology, incorporating 1-7 % Ni into the Fe-7.5Cu matrix, while adding 1 % copper-coated graphene (GNP(Cu)) and 6 % Ti3SiC2 to enhance the control effects. The composite material with 7 % Ni demonstrates excellent performance: a tensile strength increase of 25.13 %, reaching 232.3 MPa, and a compressive strength increase of 16.14 %, reaching 675.1 MPa, with an average copper particle size increase of 79.46 % due to the sintering effects promoted by Ni. These improvements arise from the solid-solution effect and grain refinement induced by nickel, complemented by the Orowan effect, thermal mismatch, and load transfer mechanisms from GNP(Cu), Ti3SiC2, and TiC/Fe3C products, which together suppress dislocations and refine the microstructure while maintaining approximately 23 % porosity. ... mehr


Verlagsausgabe §
DOI: 10.5445/IR/1000185934
Veröffentlicht am 21.10.2025
Cover der Publikation
Zugehörige Institution(en) am KIT Institut für Angewandte Materialien – Werkstoffkunde (IAM-WK)
Publikationstyp Zeitschriftenaufsatz
Publikationsmonat/-jahr 11.2025
Sprache Englisch
Identifikator ISSN: 2238-7854
KITopen-ID: 1000185934
Erschienen in Journal of Materials Research and Technology
Verlag Elsevier
Band 39
Seiten 715–729
Nachgewiesen in Web of Science
OpenAlex
Dimensions
Scopus
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