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- W2905305109 endingPage "1800827" @default.
- W2905305109 startingPage "1800827" @default.
- W2905305109 abstract "Texture modeling of accumulative roll-bonding (ARB) is challenging due to the involved cutting, stacking, and roll-bonding. In the present study, the crystal plasticity finite element model is used to study the texture evolution in an ARB processed aluminum single crystal. The predictions, after being validated by the experimental observations, are analyzed, and an inhomogeneous through-thickness deformation, in terms of slip system activation, crystal rotation, and shear strain, is revealed. It is found that the cutting-stacking causes shear strain reversal and crystal rotation reversal. The dynamic balance between the formed and destroyed (4 4 11)[11 11 8 ¯ ] and (0 0 1)[1 1 0] makes them stable in area fraction. Besides, another modeling skill, Submodel, is used to improve the texture prediction by increasing the mesh resolution in smaller regions, and microbands associated with the primarily activated slip systems are predicted in the Submodel." @default.
- W2905305109 created "2018-12-22" @default.
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- W2905305109 date "2018-12-06" @default.
- W2905305109 modified "2023-09-27" @default.
- W2905305109 title "Texture Modeling of Accumulative Roll-Bonding Processed Aluminum Single Crystal {1 2 3}<6 3 4> by Crystal Plasticity FE" @default.
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- W2905305109 doi "https://doi.org/10.1002/adem.201800827" @default.
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