Coupled mechanical and thermal simulation of warm compaction

来源期刊:中国有色金属学报(英文版)2006年第2期

论文作者:李元元 赵伟斌 周照耀 陈普庆

文章页码:311 - 315

Key words:powder metal; warm compaction; finite element method; friction; relative density

Abstract: Warm compaction process of pure iron powder was investigated. Due to the existence of elastic, plastic and thermal strains, a coupled mechanical and thermal model was applied. The elasto-plastic constitutive equations for powder material were developed based on ellipsoidal yield criterion and continuum theory. The constitutive equations were integrated into the constitutive integral arithmetic and solved employing incremental iterative solution strategy. The yield strength of iron powder was obtained according to the tensile experiments. When the compaction temperature was raised to 130 ℃, the yield strength of iron powder metal drops to 85% of room temperature value. Modified coulomb friction law is applied and the simulation results show that friction was an important factor resulting in the inhomogeneous relative density and reverse-density distribution phenomena in the regions near the die wall and the symmetrical axis.

基金信息:the National Foundation of China for Outstanding Young Scientists
the National Natural Science Foundation of China
China Education and Research Grid (China Grid)

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