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Compressibility of Breakable Materials.
- 1.0470336 - ÚCHP 2017 RIV IN eng C - Conference Paper (international conference)
Pěnkavová, Věra - Kulaviak, Lukáš - Růžička, Marek - Havlica, Jaromír - Punčochář, Miroslav - Schöngut, M. - Grof, Z. - Štěpánek, F. - Zámostný, P.
Compressibility of Breakable Materials.
Conference Proceedings and Full Papers PGBSIA2016. Patiala: Thapar University, 2016 - (Mallick, S.). ISBN N.
[International Conference and Exhibition on Powder, Granule and Bulk Solids: Innovations and Applications (PGBSIA 2016) /2./. Jaipur (Rajasthan) (IN), 01.12.2016-03.12.2016]
R&D Projects: GA ČR(CZ) GA15-05534S
Institutional support: RVO:67985858
Keywords : compressibility * anisometric particles * breakable materials
Subject RIV: CI - Industrial Chemistry, Chemical Engineering
http://www.pgbsia.com/wp-content/uploads/LIST_OF_ABSTRACTS_PGBSIA2016_Circulation.pdf
This contribution reports on experiments on uniaxial compression of random layers of dry granular materials of various types of anisometric particles. The goal is twofold. First, to characterize their compressibility features for their classification. Second, to select a suitable material for further breakage studies that can be compared with numerical simulations of fragile particles. Eight different particulate materials were tested, both real- and model-shaped, and both inorganic and organic. The compression was performed using four different instruments to cover a wide range of loads. Based on the results obtained, according to their compressibility, the particles can be divided into several classes: elastic materials (glass fibres), breakable /fragile/ materials (rod-like graphite, hair-like pasta, rod-like pasta), hard cohesive materials (terephtalic acid), and hard non-cohesive /cohesion-less/ materials (KMnO4, PbCl2). The class of breakable materials was selected for further studies. The hair-like pasta was excluded, since its shape is ill-defined. Thus, the two candidates remained: rod-like pasta and rod-like graphite. They were examined for certain strength-related material properties in the threepoint rigidity test (consistency, stiffness, bending moment etc.).
Permanent Link: http://hdl.handle.net/11104/0268006
File Download Size Commentary Version Access SKMBT_C22017020313170.pdf 1 3.1 MB Publisher’s postprint open-access
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