A logical opportinity for preliminary evaluation of your own compactability out-of costs made of good content of your exploration and you may smelting industry is establish. The procedure lets starting the functional reliance of your density regarding a great briquette on the used stress rather than tests for the compressing of a charge for the special stress devices. The procedure involves the usage of a special compaction model and the relationship between the compact thickness during the certain stress and you may the bodily and technical characteristics regarding a fee (loose majority thickness, tapped majority density, correct thickness of dust) getting inactive costs and you may charge mixed with h2o otherwise h2o binder. The procedure can be used in the briquette design when selecting running methods and you will performing tension devices.
Records
Yu. Letter. Loginov, S. P. Burkin, Letter. A. Babailov, and you may L. I. Polyanskii, Mechanics of Roll Briquetting off Loose Materials, AMB, Ekaterinburg (2010).
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D. Good. Kovalev, N. D. Vanyukova, V. P. Ivashchenko, ainsi que al., Theoretical Rules off Production of Agglomerated Raw materials [inside the Russian], IMA-drive, Dnipropetrovsk (2011).
Yu. S. Semenov, V. V. Gorupakha, An effective. Yards. Kuznetsov, et al., “Experience of playing with manganese-that contains information into the blast-heating system costs,” Metallurgist, 63, No. 9–ten, 1013–1023 (2020).
L. Lohmeier, C. Thaler, C. Harris, ainsi que al., “Briquetting of good-grained residues regarding metal and you can material development playing with organic and you may inorganic binders,” Steel Res. Int., 12, No. 91, 202–238 (2020).
S. V. Vashchenko, A beneficial. Yu. Khudyakov, K. V. Baiul, and you may Yu. S. Semenov, “Selecting the batch composition in briquetting,” Steel during the Transl., 48, No. 8, 509–512 (2018).
K. Baiul, A beneficial. Khudyakov, S. Vashchenko, ainsi que al., “The fresh new experimental study of compaction details and you may flexible effectation of great small fraction raw materials,” Mining Research, 27, 7–18 (2020).
A great. Yu. Khudyakov, S. V. Vashchenko, K. V. Baiul, and you can Yu. S. Semeotte creation,” Refract. Industr. Ceram., 59, Zero. 4, 333–337 (2018).
N. Good. Babailov, Yu. N. Loginov, and you can L. We. Polyanskii, “Mechanized attributes out-of briquettes out of chromium centers,” Obogashch. Rud, No. 6 (384), 31–35 (2019).
N. An effective. Babailov, L. We. Polyanskii, and you may Yu. Letter. Loginov, “Briquetting metallurgical orange screenings and you can parameters where you can increase techniques results,” Metallurgist, 60, No. 5–six, 576–580 (2016).
K. V. Baiul, Letter. Good. Solodka, A. Y. Khudyakov, and S. V. Vashchenko, “Number of intellectual surface setup for roller force rims,” Powder Metall. Steel Ceram., 59, No. 1–dos, 9–21 (2020).
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Buy unmarried article
An excellent. Yu. Khudyakov, S. V. Vashchenko, K. V. Bayul, and you can Yu. S. Semenov, “Experimental verification of the latest compaction equations having good content of exploration and metallurgical state-of-the-art. Region step 1. First compaction formula,” Refract. Industr. Ceram., 62, No. 1, 15–twenty-four (2021).
B. Meters. Maimur, B. I. Petrenko, and you may O. V. Korobtsov, Type of Promoting Briquettes having Starch-Who has Binder [within the Ukrainian], Patent UA 94677, IPC S22V1/14; appl. Zero. a201007048, , Byull. Zero. ten.
Good. Yu. Khudyakov and you can S. V. Vashchenko, “Study from known dependencies and you will build of the latest compaction equations to have good materials of exploration and you may metallurgical advanced,” Refract. Industr. Ceram., sixty, Zero. six, 618–626 (2020).
A beneficial. N. Korchevskii and you can N. A good. Zvyagintseva, “Experimental studies of technology from briquetting iron-that contains spend of metallurgical design,” Gorn. Improve.-Analit. Byull., No. nine, 122–130 (2019).