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3D computational modeling of powder compaction processes using a three-invariant hardening cap plasticity model

机译:使用三不变硬化盖塑性模型的粉末压实过程的3D计算建模

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In this paper, a three-invariant cap plasticity is developed for description of powder behavior under cold compaction process. The constitutive elasto-plastic matrix and its components are derived as the nonlinear functions of powder relative density. Different aspects of 2D and 3D cap plasticity models are illustrated and the procedure for determination of powder parameters is described. It is shown how the proposed model could generate the elliptical yield surface, double-surface cap plasticity and the irregular hexagonal pyramid of the Mohr-Coulomb and cone-cap yield surface, as special cases. The single-cap plasticity is performed within the framework of large finite element deformation, in order to predict the nonuniform relative density distribution during powder die pressing. Finally, the applicability of the proposed model for description of powder behavior is demonstrated in numerical simulation of triaxial and confining pressure tests. The numerical schemes are examined for efficiency in the modeling of an automotive component, a conical shaped-charge liner and a connecting-rod.
机译:在本文中,开发了一种三不变的瓶盖可塑性,用于描述冷压过程中粉末的行为。本构弹塑性基体及其成分是粉末相对密度的非线性函数。说明了2D和3D瓶盖可塑性模型的不同方面,并描述了确定粉末参数的过程。在特殊情况下,该模型显示了如何生成椭圆形屈服面,双面盖塑性以及莫尔-库仑和圆锥盖屈服面的不规则六边形金字塔。为了预测粉末压模过程中相对密度的不均匀分布,在有限的大变形范围内进行了单帽塑性加工。最后,在三轴试验和密闭压力试验的数值模拟中证明了所提出的模型用于描述粉末行为的适用性。检查了数值方案的效率,以建模汽车部件,锥形装药衬套和连杆。

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