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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Finite element modelling of crack propagation in metal powder compaction using Mohr-Coulomb and Elliptical Cap yield criteria
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Finite element modelling of crack propagation in metal powder compaction using Mohr-Coulomb and Elliptical Cap yield criteria

机译:使用Mohr-Coulomb和Elliptical Cap屈服准则对金属粉末压实过程中裂纹扩展的有限元建模

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摘要

In the modelling of the compaction process of particulate materials into a coherent green body, an appropriate yield criterion for the deformation process has to be selected. In this paper, two commonly used yield criteria for powder compaction, namely Mohr-Coulomb and Elliptical Cap are utilized in the finite element modelling of iron powder compaction process, which incorporates a fracture criterion of granular materials in compression. The simulated crack growth patterns obtained by using these two yield criteria were compared in terms of the influence of shear stress and relative density distributions. This work has shown that the application of the Elliptical Cap yield model gives a more realistic simulated Mode 11 crack propagation during the densification stage of the metal powder compaction process in comparison to the Mohr-Coulomb yield model.
机译:在将颗粒材料压实成连贯的生坯的过程进行建模时,必须为变形过程选择适当的屈服准则。本文在铁粉压实过程的有限元建模中采用了两种常用的粉末压实屈服准则,即Mohr-Coulomb和Elliptical Cap,其中包含了颗粒材料在压缩过程中的断裂准则。通过使用这两个屈服准则获得的模拟裂纹扩展模式在剪切应力和相对密度分布的影响方面进行了比较。这项工作表明,与Mohr-Coulomb屈服模型相比,椭圆帽屈服模型的应用在金属粉末压实过程的致密化阶段提供了更为逼真的模拟11型裂纹扩展。

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