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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Finite Element Simulation of Sintering Process (Microscopic Modelling of Powder Compacts and Constitutive Equation for Sintering)
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Finite Element Simulation of Sintering Process (Microscopic Modelling of Powder Compacts and Constitutive Equation for Sintering)

机译:烧结过程的有限元模拟(粉末压块的微观建模和烧结的本构方程)

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摘要

Three-dimensional microscopic models of powder compacts for viscoplastic finite element analysis are developed to investigate the deformation behavior of powder particles during sintering. The repeating unit cells containing three types of pore with a regular arrangement are analyzed. Pore shrinkage due to surface tension during the intermediate stage of sintering is simulated. The volumetric strain rates of the unit cells are compared with that in a spherical shell model and the effect of the pore shape on the shrinkage rate and the sintering stress is discussed. A constitutive equation for sintering is proposed on the basis of the analyzed results. The sintering is described as the deformation process of viscous porous bodies under the action of the sintering stress. The proposed constitutive equation gives a good fit to the results obtained by experiment as well as the finite element analysis.
机译:建立了粉体的三维微观模型,用于粘塑性有限元分析,以研究粉末颗粒在烧结过程中的变形行为。分析包含三种有规则排列的孔的重复晶胞。模拟了烧结中间阶段由于表面张力引起的孔收缩。将单位晶胞的体积应变率与球形壳模型中的应变率进行了比较,并讨论了孔形状对收缩率和烧结应力的影响。在分析结果的基础上,提出了烧结的本构方程。烧结被描述为粘性多孔体在烧结应力作用下的变形过程。所提出的本构方程很好地拟合了通过实验以及有限元分析获得的结果。

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