Experimental and numerical investigation of densification behaviors during powder compaction

Author:

LEI Yu1,YAN Shiwei1,HUANG Shangyu1,LIU Wei1,SUN Shiming1,ZHOU Mengcheng1,FENG Fei2

Affiliation:

1. School of Materials Science and Engineering, Wuhan University of Technology

2. State Key Laboratory of Materials Processing and Die & Mould Technology, Huazhong University of Science and Technology

Publisher

Japan Society of Mechanical Engineers

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference24 articles.

1. An, X., Zhang, Y., Zhang, Y., and Yang, S., Finite element modeling on the compaction of copper powder under different conditions, Metallurgical and Materials Transactions A, Vol.46 (2015), pp.3744-3752.

2. Cunningham, J. C., Sinka, I. C., and Zavaliangos, A., Analysis of tablet compaction. i. characterization of mechanical behavior of powder and powder/tooling friction, Journal of Pharmaceutical Sciences, Vol.93 (2004), pp.2022-2039.

3. Cai, Z., Wang, R., Peng, C., and Zhang, C., Effect of particle size on microstructure and cold compaction of gas-atomized hypereutectic al-si alloy powder, Metallurgical and Materials Transactions B, Vol.46 (2015), pp.824-830.

4. Diarra, H., Mazel, V., Boillon, A., Rehault, L., Busignies, V., and Bureau, S., Finite element method (fem) modeling of the powder compaction of cosmetic products: comparison between simulated and experimental results, Powder Technology, Vol.224 (2012), pp.233-240.

5. Eakins, D. E., and Chapman, D. J., The influence of particle morphology on the dynamic densification of metal powders, American Institute of Physics, Vol.1426 (2012), pp.1494-1494.

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