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Published in: Metallurgist 9-10/2022

01-02-2022

New Method for Predicting the Compactability of Charges Made from Fine Materials of the Mining and Smelting Industry

Authors: A. Yu. Khudyakov, S. V. Vashchenko, K. V. Baiul, Yu. S. Semenov, V. V. Horupakha

Published in: Metallurgist | Issue 9-10/2022

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Abstract

An analytical method for preliminary assessment of the compactability of charges made from fine materials of the mining and smelting industry is developed. The method allows establishing the functional dependence of the density of a briquette on the applied pressure without experiments on the compression of a charge in special pressure equipment. The method involves the use of a new compaction model and the relationship between the compact density at a given pressure and the physical and mechanical properties of a charge (loose bulk density, tapped bulk density, true density of particles) for dry charges and charges mixed with water or liquid binder. The method can be used in briquette production when choosing processing modes and creating pressure equipment.

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Literature
1.
go back to reference V. V. Ozhogin, Fundamentals of the Theory and Technology of Briquetting Ground Metallurgical Raw Materials [in Russian], PGTU, Mariupol (2010). V. V. Ozhogin, Fundamentals of the Theory and Technology of Briquetting Ground Metallurgical Raw Materials [in Russian], PGTU, Mariupol (2010).
2.
go back to reference A. Babich, D. Senk, H. W. Gudenau, et al., Ironmaking, RWTH Aachen University, Aachen (2008). A. Babich, D. Senk, H. W. Gudenau, et al., Ironmaking, RWTH Aachen University, Aachen (2008).
3.
go back to reference Yu. N. Loginov, S. P. Burkin, N. A. Babailov, and L. I. Polyanskii, Mechanics of Roll Briquetting of Loose Materials, AMB, Ekaterinburg (2010). Yu. N. Loginov, S. P. Burkin, N. A. Babailov, and L. I. Polyanskii, Mechanics of Roll Briquetting of Loose Materials, AMB, Ekaterinburg (2010).
4.
go back to reference A. N. Korchevskii, E. I. Nazimko, V. G. Samoilik, et al., Agglomeration of Mineral Raw Materials and Its Products of Processing [in Russian], Izd. DonNTU, Donetsk (2019). A. N. Korchevskii, E. I. Nazimko, V. G. Samoilik, et al., Agglomeration of Mineral Raw Materials and Its Products of Processing [in Russian], Izd. DonNTU, Donetsk (2019).
5.
go back to reference A. Bizhanov and V. Chizhikova, Agglomeration in Metallurgy, Springer Inter. Publishing, Cham, Switzerland (2020).CrossRef A. Bizhanov and V. Chizhikova, Agglomeration in Metallurgy, Springer Inter. Publishing, Cham, Switzerland (2020).CrossRef
6.
go back to reference D. A. Kovalev, N. D. Vanyukova, V. P. Ivashchenko, et al., Theoretical Fundamentals of Production of Agglomerated Raw Materials [in Russian], IMA-press, Dnipropetrovsk (2011). D. A. Kovalev, N. D. Vanyukova, V. P. Ivashchenko, et al., Theoretical Fundamentals of Production of Agglomerated Raw Materials [in Russian], IMA-press, Dnipropetrovsk (2011).
7.
go back to reference Yu. S. Semenov, V. V. Gorupakha, A. M. Kuznetsov, et al., “Experience of using manganese-containing materials in blast-furnace charge,” Metallurgist, 63, No. 9–10, 1013–1023 (2020). Yu. S. Semenov, V. V. Gorupakha, A. M. Kuznetsov, et al., “Experience of using manganese-containing materials in blast-furnace charge,” Metallurgist, 63, No. 9–10, 1013–1023 (2020).
8.
go back to reference L. Lohmeier, C. Thaler, C. Harris, et al., “Briquetting of fine-grained residues from iron and steel production using organic and inorganic binders,” Steel Res. Int., 12, No. 91, 202–238 (2020). L. Lohmeier, C. Thaler, C. Harris, et al., “Briquetting of fine-grained residues from iron and steel production using organic and inorganic binders,” Steel Res. Int., 12, No. 91, 202–238 (2020).
9.
go back to reference S. V. Vashchenko, A. Yu. Khudyakov, K. V. Baiul, and Yu. S. Semenov, “Selecting the batch composition in briquetting,” Steel in Transl., 48, No. 8, 509–512 (2018).CrossRef S. V. Vashchenko, A. Yu. Khudyakov, K. V. Baiul, and Yu. S. Semenov, “Selecting the batch composition in briquetting,” Steel in Transl., 48, No. 8, 509–512 (2018).CrossRef
10.
go back to reference K. Baiul, A. Khudyakov, S. Vashchenko, et al., “The experimental study of compaction parameters and elastic aftereffect of fine fraction raw materials,” Mining Science, 27, 7–18 (2020). K. Baiul, A. Khudyakov, S. Vashchenko, et al., “The experimental study of compaction parameters and elastic aftereffect of fine fraction raw materials,” Mining Science, 27, 7–18 (2020).
11.
go back to reference A. Yu. Khudyakov, S. V. Vashchenko, K. V. Baiul, and Yu. S. Semenov, “Kaolin raw material briquetting for lump chamotte production,” Refract. Industr. Ceram., 59, No. 4, 333–337 (2018).CrossRef A. Yu. Khudyakov, S. V. Vashchenko, K. V. Baiul, and Yu. S. Semenov, “Kaolin raw material briquetting for lump chamotte production,” Refract. Industr. Ceram., 59, No. 4, 333–337 (2018).CrossRef
12.
go back to reference N. A. Babailov, Yu. N. Loginov, and L. I. Polyanskii, “Mechanical properties of briquettes of chromium concentrates,” Obogashch. Rud, No. 6 (384), 31–35 (2019). N. A. Babailov, Yu. N. Loginov, and L. I. Polyanskii, “Mechanical properties of briquettes of chromium concentrates,” Obogashch. Rud, No. 6 (384), 31–35 (2019).
13.
go back to reference N. A. Babailov, L. I. Polyanskii, and Yu. N. Loginov, “Briquetting metallurgical lime screenings and parameters making it possible to improve process efficiency,” Metallurgist, 60, No. 5–6, 576–580 (2016). N. A. Babailov, L. I. Polyanskii, and Yu. N. Loginov, “Briquetting metallurgical lime screenings and parameters making it possible to improve process efficiency,” Metallurgist, 60, No. 5–6, 576–580 (2016).
14.
go back to reference K. V. Baiul, N. A. Solodka, A. Y. Khudyakov, and S. V. Vashchenko, “Selection of rational surface configuration for roller press tires,” Powder Metall. Metal Ceram., 59, No. 1–2, 9–21 (2020).CrossRef K. V. Baiul, N. A. Solodka, A. Y. Khudyakov, and S. V. Vashchenko, “Selection of rational surface configuration for roller press tires,” Powder Metall. Metal Ceram., 59, No. 1–2, 9–21 (2020).CrossRef
15.
go back to reference S. V. Vashchenko, B. N. Maimur, I. G. Murav’eva, and V. I. Petrenko, “Development of an analytic method for predicting and assessing the compressive resistance of charges taking into account their properties,” in: Systems Technologies [in Russian], Issue 4 (81), NMetAU, Dnipropetrovsk (2012), pp. 3–10. S. V. Vashchenko, B. N. Maimur, I. G. Murav’eva, and V. I. Petrenko, “Development of an analytic method for predicting and assessing the compressive resistance of charges taking into account their properties,” in: Systems Technologies [in Russian], Issue 4 (81), NMetAU, Dnipropetrovsk (2012), pp. 3–10.
16.
go back to reference A. Yu. Khudyakov, S. V. Vashchenko, K. V. Bayul, and Yu. S. Semenov, “Experimental verification of new compaction equations for fine materials of the mining and metallurgical complex. Part 1. Basic compaction equation,” Refract. Industr. Ceram., 62, No. 1, 15–24 (2021).CrossRef A. Yu. Khudyakov, S. V. Vashchenko, K. V. Bayul, and Yu. S. Semenov, “Experimental verification of new compaction equations for fine materials of the mining and metallurgical complex. Part 1. Basic compaction equation,” Refract. Industr. Ceram., 62, No. 1, 15–24 (2021).CrossRef
17.
go back to reference B. M. Maimur, B. I. Petrenko, and O. V. Korobtsov, Method of Producing Briquettes with Starch-Containing Binder [in Ukrainian], Patent UA 94677, IPC S22V1/14; appl. No. a201007048, Jun. 7, 2010; Publ. May 25, 2011, Byull. No. 10. B. M. Maimur, B. I. Petrenko, and O. V. Korobtsov, Method of Producing Briquettes with Starch-Containing Binder [in Ukrainian], Patent UA 94677, IPC S22V1/14; appl. No. a201007048, Jun. 7, 2010; Publ. May 25, 2011, Byull. No. 10.
18.
go back to reference A. Yu. Khudyakov and S. V. Vashchenko, “Analysis of known dependencies and construction of new compaction equations for fine materials of the mining and metallurgical complex,” Refract. Industr. Ceram., 60, No. 6, 618–626 (2020).CrossRef A. Yu. Khudyakov and S. V. Vashchenko, “Analysis of known dependencies and construction of new compaction equations for fine materials of the mining and metallurgical complex,” Refract. Industr. Ceram., 60, No. 6, 618–626 (2020).CrossRef
19.
go back to reference E. I. Andrianov, Methods of Determining the Structurally Mechanical Characteristics of Powder Materials [in Russian], Khimiya, Moscow (1982). E. I. Andrianov, Methods of Determining the Structurally Mechanical Characteristics of Powder Materials [in Russian], Khimiya, Moscow (1982).
20.
go back to reference A. N. Korchevskii and N. A. Zvyagintseva, “Experimental studies of the technology of briquetting iron-containing waste of metallurgical production,” Gorn. Inform.-Analit. Byull., No. 9, 122–130 (2019).CrossRef A. N. Korchevskii and N. A. Zvyagintseva, “Experimental studies of the technology of briquetting iron-containing waste of metallurgical production,” Gorn. Inform.-Analit. Byull., No. 9, 122–130 (2019).CrossRef
21.
go back to reference B. M. Ravich, Briquetting in Nonferrous and Ferrous Metallurgy [in Russian], Metallurgiya, Moscow (1975). B. M. Ravich, Briquetting in Nonferrous and Ferrous Metallurgy [in Russian], Metallurgiya, Moscow (1975).
22.
go back to reference https://www.researchgate.net/publication/350856883_Materialy_po_ocenke_rabotospo-sobnosti_metoda_prognozirovaniadocx (accessed on April 15, 2021). https://www.researchgate.net/publication/350856883_Materialy_po_ocenke_rabotospo-sobnosti_metoda_prognozirovaniadocx (accessed on April 15, 2021).
Metadata
Title
New Method for Predicting the Compactability of Charges Made from Fine Materials of the Mining and Smelting Industry
Authors
A. Yu. Khudyakov
S. V. Vashchenko
K. V. Baiul
Yu. S. Semenov
V. V. Horupakha
Publication date
01-02-2022
Publisher
Springer US
Published in
Metallurgist / Issue 9-10/2022
Print ISSN: 0026-0894
Electronic ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-022-01234-0

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