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Constitutive equations for metal powders: Application to powder forming processes

机译:金属粉末的本构方程:在粉末成形过程中的应用

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A new constitutive model for cold compaction of metal powders is developed. The plastic flow of metal powders at the macroscopic level is assumed to be representable as a combination of a distortion mechanism, and a consolidation mechanism. For the distortion mechanism the model employs a pressure-sensitive, Mohr-Coulomb type yield condition, and a new physically based non-associated flow rule. For the consolidation mechanism the model employs a smooth yield function which has a quarter-elliptical shape in the mean-normal pressure and the equivalent shear stress plane, together with an associated flow rule. The constitutive model has been implemented in a finite element program. The material parameters in the constitutive model have been calibrated for MH-100 iron powder by fitting the model to reproduce data from true triaxial compression experiments, torsion ring-sheer experiments, and simple compression experiments. The predictive capability of the constitutive model and computational procedure is checked by simulating two simple powder forming processes: (i) a uniaxial strain compression of a cylindrical sample, and (ii) forming of a conical shaped-charge liner. In both cases the predicted load-displacement curves and density variations in the compacted specimens are shown to compare well with corresponding experimental measurements. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 17]
机译:开发了一种新的金属粉末冷压实本构模型。假定在宏观水平上金属粉末的塑性流动可表示为变形机制和固结机制的组合。对于变形机制,模型采用了压敏Mohr-Coulomb型屈服条件和新的基于物理的非关联流规则。对于固结机制,模型采用了平滑的屈服函数,该函数在平均法向压力和等效剪应力平面上具有四分之一椭圆形形状,以及相关的流动规则。本构模型已经在有限元程序中实现。通过拟合模型,可以对MH-100铁粉的本构模型中的材料参数进行校准,以重现真实的三轴压缩实验,扭环剪切实验和简单压缩实验的数据。本构模型的预测能力和计算程序通过模拟两个简单的粉末成型过程来检查:(i)圆柱形样品的单轴应变压缩,以及(ii)锥形装药衬套的形成。在这两种情况下,都显示了压实试样中的预测载荷-位移曲线和密度变化,可以与相应的实验测量结果很好地进行比较。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:17]

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