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Influence of particle size distribution on nanopowder cold compaction processes

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, , Citation G Boltachev et al 2017 IOP Conf. Ser.: Mater. Sci. Eng. 208 012008 DOI 10.1088/1757-899X/208/1/012008

1757-899X/208/1/012008

Abstract

Nanopowder uniform and uniaxial cold compaction processes are simulated by 2D granular dynamics method. The interaction of particles in addition to wide-known contact laws involves the dispersion forces of attraction and possibility of interparticle solid bridges formation, which have a large importance for nanopowders. Different model systems are investigated: monosized systems with particle diameter of 10, 20 and 30 nm; bidisperse systems with different content of small (diameter is 10 nm) and large (30 nm) particles; polydisperse systems corresponding to the log-normal size distribution law with different width. Non-monotone dependence of compact density on powder content is revealed in bidisperse systems. The deviations of compact density in polydisperse systems from the density of corresponding monosized system are found to be minor, less than 1 per cent.

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10.1088/1757-899X/208/1/012008