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NON-ASSOCIATIVE FINITE STRAIN PLASTICITY COUPLED WITH ANISOTROPIC DUCTILE DAMAGE FOR METAL FORMING

机译:非关联有限菌株可塑性,具有各向异性的金属成形损伤

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This paper presents the formulation of an advanced mechanical model describing a wide class of anisotropic elastoplastic constitutive equations accounting for the strong coupling with the anisotropic ductile damage. This model is developed within the framework of thermodynamics of irreversible processes with state variables and the continuum damage mechanics. The plastic anisotropy is accounted for through a non-associative theory for which a plasticity yield criterion and the plastic potential are defined separately but considering the strong coupling between both phenomena. The damage anisotropy is defined by using a second rank tensor. The effect of damage on the mechanical fields (stress, hardening, plastic strain, etc..) is described by a fourth rank damage effect operator that is defined in the context of the hypothesis of total energy equivalence. A rotating frame formulation is used to fulfil the objectivity of the constitutive equations under finite transformation. Finally, in order to illustrate the predictive capabilities of the model, the parametric studies with some simple loading case are investigated and the results discussed on the light of the anisotropic character of the ductile damage and its interaction with the anisotropy of plastic flow
机译:本文介绍了描述了一种描述广泛各向异性弹塑性本构方程的先进机械模型,占与各向异性韧性损伤的强耦合的核算。该模型是在具有状态变量和连续损伤力学的不可逆过程的热力学框架内开发的。通过非关联理论算是塑性各向异性,其中可塑性屈服标准和塑料电位是单独定义的,但考虑到这两种现象之间的强耦合。通过使用第二级张量来定义损伤各向异性。第四等级损伤效应算子描述了在总能量等效的假设的背景下定义的第四等级损伤效应算子来描述对机械领域的影响(应力,硬化,塑性菌株等。旋转框架制剂用于满足有限变换下构成方程的客观性。最后,为了说明模型的预测能力,研究了具有一些简单装载案例的参数研究,并根据韧性损伤的各向异性特征讨论的结果及其与塑性流动各向异性的相互作用

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