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- W4207066329 endingPage "103240" @default.
- W4207066329 startingPage "103240" @default.
- W4207066329 abstract "A typical layered Al composed of alternating fine-grained layers (FLs) and coarse-grained layers (CLs), fabricated by hot pressing and hot rolling, exhibits a superior strength-ductility synergy under uniaxial tensile loading compared with monolithic Al. The mechanism behind the excellent mechanical properties was elucidated from the perspective of local stress state and local strain state. We found that the operative slip systems of CLs cannot be predicted by the classical Schmid factor, indicating a complex local stress state differing from global uniaxial tension. The so-called local multiaxial stress state, probably caused by the deformation incompatibility between constituent layers, was then proposed, and proved feasible for predicting the slip systems in CLs. On the other hand, the digital image correlation revealed that the strong strain partitioning leads to the transformation of local strain state on CLs from uniaxial to biaxial stretch despite under uniaxial tensile loading. Such the local strain state was incorporated into the Taylor ambiguity method, which can derive magnitudes of operative slip systems in the CLs grains with different orientations. The Taylor ambiguity results agreed well with the multiple microbands formation revealed by the quasi in-situ electron backscatter diffraction coupled with a novel misorientation mapping approach. The characteristic slip system activation and dislocation microbands governed by the local stress state and local strain state imply more latent hardening, hence enhancing the strain hardening capability of layered Al. Our work provides a new direction to achieve a superior strength-ductility synergy by designing local stress/strain and tailoring corresponding deformation mechanisms." @default.
- W4207066329 created "2022-01-26" @default.
- W4207066329 creator A5038061609 @default.
- W4207066329 creator A5042735489 @default.
- W4207066329 creator A5068323646 @default.
- W4207066329 creator A5068402156 @default.
- W4207066329 creator A5084189901 @default.
- W4207066329 creator A5086485895 @default.
- W4207066329 creator A5086775306 @default.
- W4207066329 date "2022-05-01" @default.
- W4207066329 modified "2023-10-18" @default.
- W4207066329 title "Superior strength-ductility synergy of layered aluminum under uniaxial tensile loading: The roles of local stress state and local strain state" @default.
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