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Published in: Glass and Ceramics 11-12/2017

30-03-2017 | WASTES— INTO PRODUCTION

Glass Ceramic Materials Based on Beneficiation Tailings of Lead-Zinc Ore

Authors: M. V. Pavlov, I. V. Pavlov, A. V. Lineitsev, V. F. Pavlov

Published in: Glass and Ceramics | Issue 11-12/2017

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Abstract

A glass ceramic material was obtained from the beneficiation tailings of lead-zinc ores. The strength of the control samples was 22.26 MPa in bending and 90.22 MPa in compression. After 100 cycles of testing the samples for frost resistance, these characteristics changed to 9.61 MPa in bending and 35.30 MPa in compression.

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Footnotes
1
Here and below the content by weight, %.
 
Literature
1.
go back to reference V. F. Abdrakhimov, “Phase transformations occurring during the firing process of ceramic tiles based on beneficiation tailings,” Steklo Keram., No. 3, 23 – 25 (1992); V. F. Abdrakhimov, “Phase transformations occurring during the firing process of ceramic tiles based on beneficiation tailings,” Glass Ceram., 49(3), 140 – 144 (1992). V. F. Abdrakhimov, “Phase transformations occurring during the firing process of ceramic tiles based on beneficiation tailings,” Steklo Keram., No. 3, 23 – 25 (1992); V. F. Abdrakhimov, “Phase transformations occurring during the firing process of ceramic tiles based on beneficiation tailings,” Glass Ceram., 49(3), 140 – 144 (1992).
2.
go back to reference V. P. Il’ina, G. P. Ozerova, and G. A. Lebedeva, “Facing tiles based on feldspar material and Cambrian clay from Chekalovskoe deposit,” Steklo Keram., No. 3, 22 – 23 (2005); V. P. Il’ina, G. P. Ozerova, and G. A. Lebedeva, “Facing tiles based on feldspar material and Cambrian clay from Chekalovskoe deposit,” Glass Ceram., 62(3 – 4), 84 – 86 (2005). V. P. Il’ina, G. P. Ozerova, and G. A. Lebedeva, “Facing tiles based on feldspar material and Cambrian clay from Chekalovskoe deposit,” Steklo Keram., No. 3, 22 – 23 (2005); V. P. Il’ina, G. P. Ozerova, and G. A. Lebedeva, “Facing tiles based on feldspar material and Cambrian clay from Chekalovskoe deposit,” Glass Ceram., 62(3 – 4), 84 – 86 (2005).
3.
go back to reference V. P. Il’ina, G. A. Lebedeva, and G. P. Ozerova, “Use of technogenic mineral raw material from Karelia for obtaining ceramic tile,” Stroit. Mater., No. 2, 47 – 49 (2006). V. P. Il’ina, G. A. Lebedeva, and G. P. Ozerova, “Use of technogenic mineral raw material from Karelia for obtaining ceramic tile,” Stroit. Mater., No. 2, 47 – 49 (2006).
4.
go back to reference E. S. Abdrakhimova, “Effect of feldspar concentrate on the processes occurring during firing of acid-resisting materials based on beneficiation of ferrous metallurgy and pyrophyllite,” Novye Ogneupory, No. 9, 16 – 20 (2008). E. S. Abdrakhimova, “Effect of feldspar concentrate on the processes occurring during firing of acid-resisting materials based on beneficiation of ferrous metallurgy and pyrophyllite,” Novye Ogneupory, No. 9, 16 – 20 (2008).
5.
go back to reference A. P. Zubekhin, A. A. Galenko, and L. D. Popova, “One-time firing ceramic mix using manufacturing waste products as fluxes,” Steklo Keram., No. 7, 17 – 19 (2005); A. P. Zubekhin, A. A. Galenko, and L. D. Popova, “One-time firing ceramic mix using manufacturing waste products as fluxes,” Glass Ceram., 62(3 – 4), 84 – 86 (2005). A. P. Zubekhin, A. A. Galenko, and L. D. Popova, “One-time firing ceramic mix using manufacturing waste products as fluxes,” Steklo Keram., No. 7, 17 – 19 (2005); A. P. Zubekhin, A. A. Galenko, and L. D. Popova, “One-time firing ceramic mix using manufacturing waste products as fluxes,” Glass Ceram., 62(3 – 4), 84 – 86 (2005).
6.
go back to reference A. A. Galenko, “One-time-firing ceramic tile using quartz-feldspar raw material,” Stroit. Mater., No. 4, 47 – 48 (2010). A. A. Galenko, “One-time-firing ceramic tile using quartz-feldspar raw material,” Stroit. Mater., No. 4, 47 – 48 (2010).
7.
go back to reference A. Yu. Stolbushkin, “Theoretical principles of the formation of ceramic matrix composites based on technogenic and natural raw material,” Stroit. Mater., No. 2, 10 – 13 (2011). A. Yu. Stolbushkin, “Theoretical principles of the formation of ceramic matrix composites based on technogenic and natural raw material,” Stroit. Mater., No. 2, 10 – 13 (2011).
8.
go back to reference O. A. Fomina and A. Yu. Stolbushkin, “Formation of a rational pore structure of wall ceramic from slag iron-ore wastes,” Stroit. Mater., No. 12, 14 – 18 (2015). O. A. Fomina and A. Yu. Stolbushkin, “Formation of a rational pore structure of wall ceramic from slag iron-ore wastes,” Stroit. Mater., No. 12, 14 – 18 (2015).
9.
go back to reference B. K. Kara-Sal, Sh. V. Seren, and D. S. Mongush, “Production of densely sintered ceramic articles using feldspar-zeolite raw material from Tuva,” Steklo Keram., No. 9, 28 – 31 (2015); B. K. Kara-Sal, Sh. V. Seren, and D. S. Mongush, “Production of densely sintered ceramic articles using feldspar-zeolite raw material from Tuva,” Glass Ceram., 72(9 – 10), 331 – 334 (2015). B. K. Kara-Sal, Sh. V. Seren, and D. S. Mongush, “Production of densely sintered ceramic articles using feldspar-zeolite raw material from Tuva,” Steklo Keram., No. 9, 28 – 31 (2015); B. K. Kara-Sal, Sh. V. Seren, and D. S. Mongush, “Production of densely sintered ceramic articles using feldspar-zeolite raw material from Tuva,” Glass Ceram., 72(9 – 10), 331 – 334 (2015).
10.
go back to reference E. M. Nikiforova, R. G. Eromasov, V. Yu. Taskin, and V. I. Anikina, “Effect of thermorheological properties of mineralizers on the formation of ceramic structures,” Vestn. SibGAU, No. 11, 174 – 179 (2011). E. M. Nikiforova, R. G. Eromasov, V. Yu. Taskin, and V. I. Anikina, “Effect of thermorheological properties of mineralizers on the formation of ceramic structures,” Vestn. SibGAU, No. 11, 174 – 179 (2011).
11.
go back to reference V. A. Ivensen, Phenomenology of Sintering and Some Theoretical Questions [in Russian], Metallurgiya, Moscow (1985), V. A. Ivensen, Phenomenology of Sintering and Some Theoretical Questions [in Russian], Metallurgiya, Moscow (1985),
12.
go back to reference W. D. Kingery, Introduction to Ceramics [Russian translation], Inostr. Lit., Moscow (1962). W. D. Kingery, Introduction to Ceramics [Russian translation], Inostr. Lit., Moscow (1962).
Metadata
Title
Glass Ceramic Materials Based on Beneficiation Tailings of Lead-Zinc Ore
Authors
M. V. Pavlov
I. V. Pavlov
A. V. Lineitsev
V. F. Pavlov
Publication date
30-03-2017
Publisher
Springer US
Published in
Glass and Ceramics / Issue 11-12/2017
Print ISSN: 0361-7610
Electronic ISSN: 1573-8515
DOI
https://doi.org/10.1007/s10717-017-9911-6

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