The effect of the particle shape and structure on the flowability of electrolytic copper powder. IV. The internal structure of the powder particles
2004
Autori
Popov, Konstantin I.Krstić, Snežana B.
Pavlović, Miomir G.
Pavlović, Ljubica J.
Maksimović, Vesna
Članak u časopisu (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentuApstrakt
The structure of powder particles was analysed by considering their cross sections. It was shown that the structure of powder particles of nonsieved flowing powders is sufficiently dense to produce a continuous surface, which does not allow the particles to jam and hence permits the free flow of nonsieved powder. It was also shown that the representative powder particle, the elementary cell of which can be presented by a 3D-cross, describes the properties of the powder relative to its flowability well.
Ključne reči:
copper powder flowability / nonsieved flowing powder / cross section of powder particlesIzvor:
Journal of the Serbian Chemical Society, 2004, 69, 10, 817-825
DOI: 10.2298/JSC0410817P
ISSN: 0352-5139
WoS: 000224923100010
Scopus: 2-s2.0-31644437409
Institucija/grupa
Tehnološko-metalurški fakultetTY - JOUR AU - Popov, Konstantin I. AU - Krstić, Snežana B. AU - Pavlović, Miomir G. AU - Pavlović, Ljubica J. AU - Maksimović, Vesna PY - 2004 UR - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/5411 AB - The structure of powder particles was analysed by considering their cross sections. It was shown that the structure of powder particles of nonsieved flowing powders is sufficiently dense to produce a continuous surface, which does not allow the particles to jam and hence permits the free flow of nonsieved powder. It was also shown that the representative powder particle, the elementary cell of which can be presented by a 3D-cross, describes the properties of the powder relative to its flowability well. T2 - Journal of the Serbian Chemical Society T1 - The effect of the particle shape and structure on the flowability of electrolytic copper powder. IV. The internal structure of the powder particles EP - 825 IS - 10 SP - 817 VL - 69 DO - 10.2298/JSC0410817P ER -
@article{ author = "Popov, Konstantin I. and Krstić, Snežana B. and Pavlović, Miomir G. and Pavlović, Ljubica J. and Maksimović, Vesna", year = "2004", abstract = "The structure of powder particles was analysed by considering their cross sections. It was shown that the structure of powder particles of nonsieved flowing powders is sufficiently dense to produce a continuous surface, which does not allow the particles to jam and hence permits the free flow of nonsieved powder. It was also shown that the representative powder particle, the elementary cell of which can be presented by a 3D-cross, describes the properties of the powder relative to its flowability well.", journal = "Journal of the Serbian Chemical Society", title = "The effect of the particle shape and structure on the flowability of electrolytic copper powder. IV. The internal structure of the powder particles", pages = "825-817", number = "10", volume = "69", doi = "10.2298/JSC0410817P" }
Popov, K. I., Krstić, S. B., Pavlović, M. G., Pavlović, L. J.,& Maksimović, V.. (2004). The effect of the particle shape and structure on the flowability of electrolytic copper powder. IV. The internal structure of the powder particles. in Journal of the Serbian Chemical Society, 69(10), 817-825. https://doi.org/10.2298/JSC0410817P
Popov KI, Krstić SB, Pavlović MG, Pavlović LJ, Maksimović V. The effect of the particle shape and structure on the flowability of electrolytic copper powder. IV. The internal structure of the powder particles. in Journal of the Serbian Chemical Society. 2004;69(10):817-825. doi:10.2298/JSC0410817P .
Popov, Konstantin I., Krstić, Snežana B., Pavlović, Miomir G., Pavlović, Ljubica J., Maksimović, Vesna, "The effect of the particle shape and structure on the flowability of electrolytic copper powder. IV. The internal structure of the powder particles" in Journal of the Serbian Chemical Society, 69, no. 10 (2004):817-825, https://doi.org/10.2298/JSC0410817P . .
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