Toward strength-ductility synergy in trimodal grain structured metal composites by actively tuning coarse domains

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Abstract

Trimodal grain structure was effective to balance the strength-ductility trade-off in ultrafine-grained metals, but the relationship between microstructures and mechanical performance is unclear. Here the dimension of coarse grain (CG) domains was elaborately tuned in the trimodal CNT/2024Al composites, and an excellent strength-ductility combination (Tensile strength: 716 ± 5 MPa, Elongation: 9.1 ± 0.3%) was achieved by optimizing the CG bands (∼4.4 µm in width). We found that the size of CG bands hardly affected strain hardening rate, but caused different crack-blunting behaviors, which was responsible for the superior strength-ductility synergy. This work highlights the importance of CG domains design in heterostructured materials. Trimodal grain structured CNT/2024Al composites with different coarse-grained (CG) bands.

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Tan, Z., Fu, X., Zheng, Q., Lin, R., Chen, M., Fan, G., … Li, Z. (2023). Toward strength-ductility synergy in trimodal grain structured metal composites by actively tuning coarse domains. Materials Research Letters, 11(6), 462–470. https://doi.org/10.1080/21663831.2023.2183782

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