Zhenwei Xie, Liexing Zhou
Enhancing the strength and toughness of aluminum alloys using microstructure optimization remains a key challenge. In this study, an AA2024 aluminum alloy with a double-layer multi-gradient structure was fabricated using 50% constrained deformation and single-stage peak aging at 150 ◦C. Microstructural and compositional analysis was performed using SEM, XRD, and TEM to investigate grain structures, dislocation density, and the distribution of precipitated phases. The results revealed a heterogeneous microstructure with variations in grain size, dislocation gradient, and precipitation phases between the constrained and deformation layers. Mechanical testing demonstrated a 30.9% increase in yield strength, a 16.4% increase in tensile strength, and a 13.9% improvement in uniform elongation compared to the T6 temper. Corrosion tests showed enhanced resistance, with a shallower intergranular corrosion depth and higher self-corrosion potential. The improved.
@article{79dbfa4a-54ee-4f5b-87f0-b8ee9c7a0268,
title={Mechanical and Corrosion Properties of AA2024 Aluminum Alloy with Multimodal Gradient Structures},
author={Zhenwei Xie and Liexing Zhou},
year={2025},
language={English}
}TY - JOUR TI - Mechanical and Corrosion Properties of AA2024 Aluminum Alloy with Multimodal Gradient Structures AU - Zhenwei Xie AU - Liexing Zhou PY - 2025 LA - English ER -
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