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Numerical simulation of metal powder die compaction with special consideration of cracking

机译:考虑开裂的金属粉末压铸成形数值模拟

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Powder die compaction is niodelled using the finite element method and a phenomenological material model The Drucker-Prager cap model is modified with the goal to describe the formation of cracks during powder transfer compaction, unloading, and ejection of the parts from the die. This is achieved by considering the cohesive strength and the cohesion slope, which characterise the current strength of the powder compact in the Drucker-Prager model, as state dependent variables. Evolution equations are formulated for these variables, so that the strength increases by densification and decreases by forced shear deformation. Some of the parameters appearing in the evolution equations are determined from measured green strength values. An iron based powder (Distaloy AE) is used for the experiments. Examples are shown to demonstrate that the density distribution can be calculated accurately as compared with an experiment, that cracking can be modelled at least qualitatively correctly, and that the compaction of complex 3D parts can be simulated.
机译:使用有限元方法和现象学材料模型对粉末压模进行压模。对Drucker-Prager帽模型进行了修改,目的是描述粉末转移压实,卸模和零件从模具中弹出时裂纹的形成。这是通过将内聚强度和内聚坡度作为状态相关变量来实现的,内聚强度和内聚坡度将Drucker-Prager模型中粉体的当前强度表征为特征。为这些变量制定了演化方程,因此强度通过致密化而增加,而由于强制剪切变形而降低。根据测得的生坯强度值确定出现在演化方程中的某些参数。实验中使用铁基粉末(Distaloy AE)。实例显示,与实验相比,可以准确地计算出密度分布,可以至少定性地对裂纹建模,并且可以模拟复杂的3D零件的压实。

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