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Application of a physically based constitutive model to metal forming analysis

机译:物理本构模型在金属成形分析中的应用

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A 3D constitutive equation for large elastoplastic deformation is derived by taking into account the energy stored in the residual microstress fields in plastically deformed material and its effect on subsequent plastic deformation: this model may be used to describe the non-linear behaviour of material at the onset of loading and unloading. Non-linear mixed isotropic and kinematic hardening, and the effects of temperature and strain rate on material properties, are also considered. Expressions with and without a yield surface are provided. A numerical algorithm which corresponds to the constitutive equation without a yield surface is proposed and the material-user-subroutine UMAT is programmed and embedded in the commercial software ABAQUS. The analyses of necking, upsetting and extrusion were used to validate the proposed constitutive model and the corresponding numerical approach in metal forming analysis.
机译:考虑到存储在塑性变形材料中的残余微应力场中的能量及其对随后塑性变形的影响,得出了用于大弹塑性变形的3D本构方程:该模型可用于描述材料在变形时的非线性行为。开始装卸。还考虑了非线性各向同性和运动学混合硬化,以及温度和应变速率对材料性能的影响。提供具有和不具有屈服面的表达式。提出了一种与本构方程相对应的无屈服面的数值算法,并将材料-用户-子程序UMAT编程并嵌入到商业软件ABAQUS中。通过颈缩,up粗和挤压的分析来验证所提出的本构模型和金属成形分析中相应的数值方法。

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