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Factors influencing particle agglomeration during solid-state sintering
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作者 Chao Wang Shao-Hua Chen 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第3期711-719,共9页
Discrete element method (DEM) is used to study the factors affecting agglomeration in three-dimensional copper particle systems during solid-state sintering. A new parameter is proposed to characterize agglomeration... Discrete element method (DEM) is used to study the factors affecting agglomeration in three-dimensional copper particle systems during solid-state sintering. A new parameter is proposed to characterize agglomeration. The effects of a series of factors are studied, including particle size, size distribution, inter-particle tangential viscosity, tem- perature, initial density and initial distribution of particles on agglomeration. We find that the systems with smaller particles, broader particle size distribution, smaller viscos- ity, higher sintering temperature and smaller initial density have stronger particle agglomeration and different distribu- tions of particles induce different agglomerations. This study should be very useful for understanding the phenomenon of agglomeration and the micro-structural evolution during sin- tering and guiding sintering routes to avoid detrimental ag- glomeration. 展开更多
关键词 solid-state sintering discrete element simula-tion. agglomeration. densification
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The effect of agglomerate on micro-structural evolution in solid-state sintering 被引量:1
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作者 Chao Wang Shao-Hua Chen 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第5期1323-1330,共8页
Discrete element method (DEM) is used in the present paper to simulate the microstructural evolution of a planar layer of copper particles during sintering. Formation of agglomerates and the effect of their rearrang... Discrete element method (DEM) is used in the present paper to simulate the microstructural evolution of a planar layer of copper particles during sintering. Formation of agglomerates and the effect of their rearrangement on densification are mainly focused on. Comparing to the existing experimental observations, we find that agglomerate can form spontaneously in sintering and its rearrangement could accelerate the densification of compacts. Snapshots of numerical simulations agree qualitatively well with experimental observations. The method could be readily extended to investigate the effect of agglomerate on sintering in a three- dimensional model, which should be very useful for understanding the evolution of microstructure of sintering systems. 展开更多
关键词 solid-state sintering discrete element method agglomerATE densification Micro-structural evolution
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