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The influence of the WC-Co composite microstructure model on stress field heterogeneity at the microstructure level: FEM based study

机译:WC-Co复合材料微观结构模型对微观结构应力场异质性的影响:基于有限元的研究

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The paper is devoted to finite element method based study of stress field heterogeneity at microstructure level of two-phase cemented carbides. Special attention is put on investigation of influence of the microstructure model type on the stress field distributions. Two- and three-dimensional models of the microstructures have been generated. Moreover, two different representations of the microstructure have been considered. The first one assumes uniformly distributed cobalt phase forming continuous boundaries between tungsten carbide particles. The second one assumes that the cobalt phase shape and distribution are created in a way that allows for no differentiation of continuous boundaries between tungsten carbide grains. Finite element analyses have been carried out with different microstructure models. The results of the simulations are stress distributions in each phase of the material. Furthermore, a numerical homogenization has been conducted to investigate the phase properties’ influence on the effective elastic constants of the cemented carbide.
机译:本文致力于基于有限元法的两相硬质合金微观结构水平应力场非均质性研究。特别注意研究微观结构模型类型对应力场分布的影响。已经生成了微观结构的二维和三维模型。此外,已经考虑了微观结构的两种不同表示。第一个假设均匀分布的钴相在碳化钨颗粒之间形成连续边界。第二个假设假设钴相的形状和分布是以不允许区分碳化钨晶粒之间连续边界的方式产生的。用不同的微观结构模型进行了有限元分析。模拟的结果是材料各相中的应力分布。此外,已经进行了数值均质化以研究相性质对硬质合金有效弹性常数的影响。

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