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首页> 外文期刊>Computational Mechanics >Reproducing Kernel Particle Method in Plasticity of Pressure-Sensitive Material with Reference to Powder Forming Process
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Reproducing Kernel Particle Method in Plasticity of Pressure-Sensitive Material with Reference to Powder Forming Process

机译:粉末成型工艺的压敏材料可塑性再生核粒子法

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摘要

In this paper, an application of the reproducing kernel particle method (RKPM) is presented in plasticity behavior of pressure-sensitive material. The RKPM technique is implemented in large deformation analysis of powder compaction process. The RKPM shape function and its derivatives are constructed by imposing the consistency conditions. The essential boundary conditions are enforced by the use of the penalty approach. The support of the RKPM shape function covers the same set of particles during powder compaction, hence no instability is encountered in the large deformation computation. A double-surface plasticity model is developed in numerical simulation of pressure-sensitive material. The plasticity model includes a failure surface and an elliptical cap, which closes the open space between the failure surface and hydrostatic axis. The moving cap expands in the stress space according to a specified hardening rule. The cap model is presented within the framework of large deformation RKPM analysis in order to predict the non-uniform relative density distribution during powder die pressing. Numerical computations are performed to demonstrate the applicability of the algorithm in modeling of powder forming processes and the results are compared to those obtained from finite element simulation to demonstrate the accuracy of the proposed model.
机译:本文提出了再生核颗粒法(RKPM)在压敏材料塑性行为中的应用。 RKPM技术在粉末压实过程的大变形分析中实施。通过施加一致性条件来构造RKPM形状函数及其导数。基本边界条件是通过使用惩罚方法来强制执行的。 RKPM形状函数的支持在粉末压实过程中覆盖了同一组粒子,因此在大变形计算中不会遇到不稳定性。在压敏材料的数值模拟中建立了一个双表面可塑性模型。可塑性模型包括一个破坏面和一个椭圆形帽,它封闭了破坏面和静水压轴之间的开放空间。动盖根据指定的硬化规则在应力空间中扩展。在大变形RKPM分析的框架内介绍了瓶盖模型,以预测粉末压模过程中相对密度分布的不均匀。进行了数值计算,以证明该算法在粉末成形过程建模中的适用性,并将结果与​​从有限元模拟获得的结果进行比较,以证明所提出模型的准确性。

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