期刊论文详细信息
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES 卷:230
Microstructure-sensitive large-deformation model for thermomechanical processing simulations
Article
Borkowski, L.1  Anahid, M.1  Staroselsky, A.1  Hu, W.2 
[1] Raytheon Technol Res Ctr, 411 Silver Lane, E Hartford, CT 06118 USA
[2] ANSYS LST, 7374 Positas Rd, Livermore, CA USA
关键词: Thermomechanical;    Crystal plasticity;    Aluminium alloy;    Large deformation;    Finite element;    Shear band;    Forging;   
DOI  :  10.1016/j.ijsolstr.2021.111161
来源: Elsevier
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【 摘 要 】

Current computational mechanics methods lack coupling between remeshing and microstructure-sensitive models. However, this combination is necessary to consider microstructural evolution during large-deformation, thermomechanical forming operations. A model focused on improving microstructure prediction under forming operations through the advancement of remeshing capabilities integrated with crystal plasticity finite element (CPFE) is developed. To enable coupling between remeshing and a large deformation crystal plasticity model, the current 3D adaptivity (i.e., remeshing) capabilities in LS-DYNA were enhanced to be compatible with a CPFE model. These enhancements include developing remapping techniques that properly account for crystallographic texture evolution during deformation. The tech-niques used for mapping of microstructure-related variables differ from the smooth interpolation schemes typically used for mapping of other field variables such as stress or displacement. It is demon-strated that combining the nonlinear large deformation capabilities of LS-DYNA, microstructure-sensitive remapping, and a CPFE model yields a simulation framework capable of accurately predicting evolution of location-specific forged part microstructures and shear band formation. Greater microstructural accu-racy in large-deformation models can lead to improved strength, life, and manufacturing yield of light-weight forged parts. (c) 2021 Elsevier Ltd. All rights reserved.

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