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Fused Filament Fabrication FFF of Metal-Ceramic Components
Published on: January 11, 2019
Microstructure and mechanical properties of Al/Cu-SS hybrid composite via ball milling and friction stir processing
Zikun Wang1, Xianyong Zhu1,2, Chen Wang1
1School of Mechanical and Aerospace Engineering, Jilin University, Changchun 130022, China.
Abstract:
To balance aluminum matrix composites' (AMCs) strength and ductility, this study used hybrid micron-sized Cu/316L stainless steel (SS) particles, fabricated via ball milling (BM) and multi-pass friction stir processing (FSP). Cu mainly enhances strength through load transfer, while the addition of SS further promotes the pinning effect and dynamic recrystallization (DRX). The in situ-formed Al2Cu further strengthens fine grain strengthening, dispersion strengthening, and load transfer efficiency. Al-5Cu AMCs showed 185.2 MPa ultimate tensile strength (UTS, +104.4% vs. matrix) but 13.8% elongation (-9.2%). Al-10SS AMCs had milder UTS (143.3 MPa, +58.2%) but better ductility (19.3%, +27.0%). The optimal Al-5Cu-10SS AMCs exhibited 183.6 MPa UTS (+102.6%), 58.96 vickers hardness (HV, +96.5%), and 20.3% elongation (+33.6%), with fracture dimples correlating to its performance. This hybrid reinforcement synergizes particle mechanisms, offering an effective route for high-performance AMCs.

