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.