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Erschienen in: Glass and Ceramics 9-10/2018

18.01.2018

Methods of Synthesizing Alumomagnesium Spinel Powders for Obtaining Transparent Ceramic (Review)

verfasst von: M. O. Senina, D. O. Lemeshev, V. A. Kolesnikov

Erschienen in: Glass and Ceramics | Ausgabe 9-10/2018

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Abstract

The prospects for using optically transparent ceramic made from alumomagnesium spinel are examined. The technologies for synthesizing spinel powders for subsequent use in obtaining transparent ceramic are described.

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Literatur
1.
Zurück zum Zitat I. F. Kobylkin and V. V. Selivanov, Materials and Structures of Lightweight Armor, MGTU im. N. É. Baumana, Moscow (2014). I. F. Kobylkin and V. V. Selivanov, Materials and Structures of Lightweight Armor, MGTU im. N. É. Baumana, Moscow (2014).
2.
Zurück zum Zitat G. M. Saibotalov and M. E. Baranov, “Use of armor ceramic for protection of the units of missile complexes,” in: Reshetnev Lectures: Proc. 18th International Scientific Conference Dedicated to the 90th Birthday Anniversary of General Designer of Rocket and Space Systems Academician M. F. Reshetnev [in Russian], Siberian State Aerospace University, Krasnoyarsk (2014), Part 1, pp. 333 – 335. G. M. Saibotalov and M. E. Baranov, “Use of armor ceramic for protection of the units of missile complexes,” in: Reshetnev Lectures: Proc. 18th International Scientific Conference Dedicated to the 90th Birthday Anniversary of General Designer of Rocket and Space Systems Academician M. F. Reshetnev [in Russian], Siberian State Aerospace University, Krasnoyarsk (2014), Part 1, pp. 333 – 335.
3.
Zurück zum Zitat V. V. Sharypin and S. K. Evstrop’ev, “Enhancement of the optical transparency of the MgAl2O4 with the use of two-step uniaxial pressing,” Opt. Zh., 83(3), 60 – 65 (2016). V. V. Sharypin and S. K. Evstrop’ev, “Enhancement of the optical transparency of the MgAl2O4 with the use of two-step uniaxial pressing,” Opt. Zh., 83(3), 60 – 65 (2016).
4.
Zurück zum Zitat E. S. Lukin, N. A. Popov, V. S. Glazachev, et al., “Technology, properties, and applications of optically transparent oxide ceramic: prospects for development,” Konstr. Kompozit. Mater., No. 3, 24 – 36 (2015). E. S. Lukin, N. A. Popov, V. S. Glazachev, et al., “Technology, properties, and applications of optically transparent oxide ceramic: prospects for development,” Konstr. Kompozit. Mater., No. 3, 24 – 36 (2015).
5.
Zurück zum Zitat E. V. Gol’eva, M. D. Mikhailov, A. A. Dunaev, and B. A. Ignatenkov, “Effect of synthesis regimes and the structure of the initial nanocrystalline powders on the optical properties of transparent ceramics MgAl2O4,” Opt. zh., 83(2), 67 – 72 (2016). E. V. Gol’eva, M. D. Mikhailov, A. A. Dunaev, and B. A. Ignatenkov, “Effect of synthesis regimes and the structure of the initial nanocrystalline powders on the optical properties of transparent ceramics MgAl2O4,” Opt. zh., 83(2), 67 – 72 (2016).
6.
Zurück zum Zitat D. Mamonova, Synthesis and Study of the Properties of Nanoparticles of Complex Oxides for the Example of Yttrium Aluminum Garnet and Bismuth Ferrite, Author’s Abstract of Candidate’s Thesis [in Russian], St. Petersburg State University, St. Petersburg (2015). D. Mamonova, Synthesis and Study of the Properties of Nanoparticles of Complex Oxides for the Example of Yttrium Aluminum Garnet and Bismuth Ferrite, Author’s Abstract of Candidate’s Thesis [in Russian], St. Petersburg State University, St. Petersburg (2015).
7.
Zurück zum Zitat E. S. Lukin, Theoretical Principles of the Production and Technology of Optically Transparent Ceramics [in Russian], MKhTI im. D. I. Mendeleev, Moscow (1982). E. S. Lukin, Theoretical Principles of the Production and Technology of Optically Transparent Ceramics [in Russian], MKhTI im. D. I. Mendeleev, Moscow (1982).
8.
Zurück zum Zitat A. Geras’kin, Synthesis and Properties of Mg(Fe0.8Ga0.2)2O4–𝛿 on Si Substrates with Thermally Stable Interphase Boundaries, Author’s Abstract of Candidate’s Thesis [in Russian], IONKh im. N. S. Kurnakova RAN, Moscow (2014). A. Geras’kin, Synthesis and Properties of Mg(Fe0.8Ga0.2)2O4–𝛿 on Si Substrates with Thermally Stable Interphase Boundaries, Author’s Abstract of Candidate’s Thesis [in Russian], IONKh im. N. S. Kurnakova RAN, Moscow (2014).
9.
Zurück zum Zitat M. K. Alekseev, G. I. Kulikova, M. Yu. Rusin, et al., “Transparent ceramic obtained by spark plasma sintering from ultrapure alumomagnesium spinel nanopowders,” Neorg. Mater., 52(3), 367 – 373 (2016).CrossRef M. K. Alekseev, G. I. Kulikova, M. Yu. Rusin, et al., “Transparent ceramic obtained by spark plasma sintering from ultrapure alumomagnesium spinel nanopowders,” Neorg. Mater., 52(3), 367 – 373 (2016).CrossRef
10.
Zurück zum Zitat S. S. Balabanov, V. E. Vaganov, E. M. Gavrishchuk, et al., “Effect of the conditions of hydrolysis of magnesium-aluminum isopropylate on the properties of alumomagnesium spinel powders,” Neorg. Mater., 50(8), 895 – 901 (2014). S. S. Balabanov, V. E. Vaganov, E. M. Gavrishchuk, et al., “Effect of the conditions of hydrolysis of magnesium-aluminum isopropylate on the properties of alumomagnesium spinel powders,” Neorg. Mater., 50(8), 895 – 901 (2014).
11.
Zurück zum Zitat D. V. Tolstikova, E. V. Gol’eva, V. S. Lebanin, et al., “Synthesis and study of nanocrystalline powders for optical ceramics made from alumomagnesium spinel,” Opt. Zh., 81(12), 69 – 73 (2014). D. V. Tolstikova, E. V. Gol’eva, V. S. Lebanin, et al., “Synthesis and study of nanocrystalline powders for optical ceramics made from alumomagnesium spinel,” Opt. Zh., 81(12), 69 – 73 (2014).
12.
Zurück zum Zitat A. V. Novikov, “Production of MgAl2O4 nanopowders by hydrolysis of double aluminum-magnesium alkoxide,” in: 15th All-Russia Youth Scientific Conf. with Elements of the Scientific School ‘Functional Materials: Properties and Applications’: Collection of Abstracts [in Russian], Lema, St. Petersburg (2014), pp. 191 – 192. A. V. Novikov, “Production of MgAl2O4 nanopowders by hydrolysis of double aluminum-magnesium alkoxide,” in: 15th All-Russia Youth Scientific Conf. with Elements of the Scientific School ‘Functional Materials: Properties and Applications’: Collection of Abstracts [in Russian], Lema, St. Petersburg (2014), pp. 191 – 192.
13.
Zurück zum Zitat G. I. Belykh, V. T. Gritsyna, and L. V. Udalov, “Structural and mechanical properties of optical ceramics made from magnesium-aluminum spinel,” Vopr. At. Nauki Tekh., No. 3, 101 – 107 (2004). G. I. Belykh, V. T. Gritsyna, and L. V. Udalov, “Structural and mechanical properties of optical ceramics made from magnesium-aluminum spinel,” Vopr. At. Nauki Tekh., No. 3, 101 – 107 (2004).
14.
Zurück zum Zitat D. A. Martyukhova, V. Skroznikova, and N. V. Popovich, “Effect of the sol-gel synthesis regime on the properties of coatings for float glass,” in: Proc. 10th Intern. Congress of Young Scientists in Chemistry and Chemical Technology (Moscow, 28 – 31 October 2014) [in Russian], Moscow (2014), pp. 65 – 67. D. A. Martyukhova, V. Skroznikova, and N. V. Popovich, “Effect of the sol-gel synthesis regime on the properties of coatings for float glass,” in: Proc. 10th Intern. Congress of Young Scientists in Chemistry and Chemical Technology (Moscow, 28 – 31 October 2014) [in Russian], Moscow (2014), pp. 65 – 67.
15.
Zurück zum Zitat P. P. Faikov, Synthesis and Sinterability of Powders Obtained in the MgO–Al2O3 System by the Sol-Gel Method, Author’s Abstract of Candidate’s Thesis [in Russian], RKhTU im. D. I. Mendeleeva, Moscow (2007). P. P. Faikov, Synthesis and Sinterability of Powders Obtained in the MgO–Al2O3 System by the Sol-Gel Method, Author’s Abstract of Candidate’s Thesis [in Russian], RKhTU im. D. I. Mendeleeva, Moscow (2007).
16.
Zurück zum Zitat I. D. Borshchishin, I. V. Lutsyuk, Ya. I. Vahhula, and V. V. Kochubei, “Synthesis of alumomagnesium highly dispersed spinel by the citrate-gel method,” Ogneup. Tekh. Keram., No. 10, 32 – 34 (2009). I. D. Borshchishin, I. V. Lutsyuk, Ya. I. Vahhula, and V. V. Kochubei, “Synthesis of alumomagnesium highly dispersed spinel by the citrate-gel method,” Ogneup. Tekh. Keram., No. 10, 32 – 34 (2009).
17.
Zurück zum Zitat L. V. Morozova, M. V. Kalinina, I. A. Drozdova, et al, “Synthesis and study of spinel-class nanoceramics,” Fiz. Khim. Stekla, 21(6), 879 – 886 (2014). L. V. Morozova, M. V. Kalinina, I. A. Drozdova, et al, “Synthesis and study of spinel-class nanoceramics,” Fiz. Khim. Stekla, 21(6), 879 – 886 (2014).
18.
Zurück zum Zitat S. V. Kuznetsov, P. P. Fedorov, V. V. Voronov, and V. V. Osiko, “Synthesis of MgAl2O4 nanopowders,” Neorg. Mater., 47(8), 988 – 991 (2011).CrossRef S. V. Kuznetsov, P. P. Fedorov, V. V. Voronov, and V. V. Osiko, “Synthesis of MgAl2O4 nanopowders,” Neorg. Mater., 47(8), 988 – 991 (2011).CrossRef
19.
Zurück zum Zitat V. A. Sokol, D. A. Rokhlenko, L. I. Konovalov, and A. V. Bromberg, “Alumomagnesium spinel for transparent ceramic,” Neorg. Mater., 17(5), 896 – 901 (1981). V. A. Sokol, D. A. Rokhlenko, L. I. Konovalov, and A. V. Bromberg, “Alumomagnesium spinel for transparent ceramic,” Neorg. Mater., 17(5), 896 – 901 (1981).
20.
Zurück zum Zitat E. G. Ledovskaya, S. V. Gabelkov, L. M. Litvinenko, et al., “Low-temperature synthesis of magnesium-aluminum spinel,” Vopr. At. Nauki Tekh., No. 1, 160 – 163 (2006). E. G. Ledovskaya, S. V. Gabelkov, L. M. Litvinenko, et al., “Low-temperature synthesis of magnesium-aluminum spinel,” Vopr. At. Nauki Tekh., No. 1, 160 – 163 (2006).
21.
Zurück zum Zitat S. V. Gabelkov, R. V. Tarasov, N. A. Poltavtsev, et al., “Phase transformation in low-temperature synthesis of MgAl2O4,”Neorg. Mater., No. 4, 462 – 470 (2007). S. V. Gabelkov, R. V. Tarasov, N. A. Poltavtsev, et al., “Phase transformation in low-temperature synthesis of MgAl2O4,”Neorg. Mater., No. 4, 462 – 470 (2007).
22.
Zurück zum Zitat Ji-Guang Li, Takayasu Ikegami, Jong-Heun Lee, and Toshiyuki Mori, “Fabrication of Translucent Magnesium Aluminum Spinel Ceramics,” J. Am. Ceram. Soc., 83, 2866 – 2868 (2000).CrossRef Ji-Guang Li, Takayasu Ikegami, Jong-Heun Lee, and Toshiyuki Mori, “Fabrication of Translucent Magnesium Aluminum Spinel Ceramics,” J. Am. Ceram. Soc., 83, 2866 – 2868 (2000).CrossRef
23.
24.
Zurück zum Zitat Shuvendu Tripathy, Deepash Shekhar Saini, and Debasis Bhattacharya, “Synthesis and fabrication of MgAl2O4 ceramic foam via a simple, low-cost and eco-friendly method,” J. Asian Ceram. Soc., Vol. 4, 149 – 154 (2016). Shuvendu Tripathy, Deepash Shekhar Saini, and Debasis Bhattacharya, “Synthesis and fabrication of MgAl2O4 ceramic foam via a simple, low-cost and eco-friendly method,” J. Asian Ceram. Soc., Vol. 4, 149 – 154 (2016).
25.
Zurück zum Zitat G. G. Galimov, A. Yu. Sidorov, and A. A. Nikiforov, “Investigation of the effect of the difference of the decomposition temperatures of the initial compounds to magnesium and aluminum oxides on the rate of the spinel formation reaction,” Ogneup. Tekh. Keram., No. 9, 21 – 26 (2014). G. G. Galimov, A. Yu. Sidorov, and A. A. Nikiforov, “Investigation of the effect of the difference of the decomposition temperatures of the initial compounds to magnesium and aluminum oxides on the rate of the spinel formation reaction,” Ogneup. Tekh. Keram., No. 9, 21 – 26 (2014).
26.
Zurück zum Zitat P. V. Kovtunenko, “Effect of gamma nonstoichiometry on spinel inversion,” Steklo Keram., No. 8, 242 – 246 (1997); P. V. Kovtunenko, “Effect of gamma nonstoichiometry on spinel inversion,” Glass Ceram., 54(7 – 8), 242 – 246 (1997). P. V. Kovtunenko, “Effect of gamma nonstoichiometry on spinel inversion,” Steklo Keram., No. 8, 242 – 246 (1997); P. V. Kovtunenko, “Effect of gamma nonstoichiometry on spinel inversion,” Glass Ceram., 54(7 – 8), 242 – 246 (1997).
27.
Zurück zum Zitat G. A. Vydrik, T. B. Solov’eva, and F. Ya. Kharitonov, Transparent Ceramics [in Russian], Énergiya, Moscow (1980). G. A. Vydrik, T. B. Solov’eva, and F. Ya. Kharitonov, Transparent Ceramics [in Russian], Énergiya, Moscow (1980).
28.
Zurück zum Zitat S. K. Eevstrop’ev, V. V. Sharypina, A. N. Smirnov, et al., “Batches for the manufacture of alumomagnesium spinel ceramics,” in: Proc. 10th Intern. Conf. on Applied Optics 2012 [in Russian], S. I. Vavilov State Optical Institute, St. Petersburg (2012), pp. 235 – 237. S. K. Eevstrop’ev, V. V. Sharypina, A. N. Smirnov, et al., “Batches for the manufacture of alumomagnesium spinel ceramics,” in: Proc. 10th Intern. Conf. on Applied Optics 2012 [in Russian], S. I. Vavilov State Optical Institute, St. Petersburg (2012), pp. 235 – 237.
29.
Zurück zum Zitat O. L. Belousov, A. I. Domanskii, V. L. Ugolkov, and L. F. Dikin, “Influence of yttrium oxide on the phase formation and sintering of ceramics based on spinel MgAl2O4,” Fiz. Khim. Stekla, 34(4), 616 – 621 (2008). O. L. Belousov, A. I. Domanskii, V. L. Ugolkov, and L. F. Dikin, “Influence of yttrium oxide on the phase formation and sintering of ceramics based on spinel MgAl2O4,” Fiz. Khim. Stekla, 34(4), 616 – 621 (2008).
30.
Zurück zum Zitat S. F. Wang, J. Zhang, D. W. Luo, et al., “Transparent ceramics: Processing, materials and applications,” in: Progress in Solid State Chemistry, 41, 20 – 54 (2013). S. F. Wang, J. Zhang, D. W. Luo, et al., “Transparent ceramics: Processing, materials and applications,” in: Progress in Solid State Chemistry, 41, 20 – 54 (2013).
31.
Zurück zum Zitat Tsukuma Koji, “Transparent MgAl2O4 spinel ceramics produced by HIP post-sintering,” J. Soc. Japan, 114, 802 – 806 (2006). Tsukuma Koji, “Transparent MgAl2O4 spinel ceramics produced by HIP post-sintering,” J. Soc. Japan, 114, 802 – 806 (2006).
32.
Zurück zum Zitat S. K. Evstrop’ev, A. N. Smirnov, and V. V. Sharypin, “Nanosize sintering additive based on B2O3 for obtaining ceramic from aluminum-magnesium spinel,” Steklo Keram., No. 7, 16 – 20 (2014); S. K. Evstrop’ev, A. N. Smirnov, and V. V. Sharypin, “Nanosize sintering additive based on B2O3 for obtaining ceramic from aluminum-magnesium spinel,” Glass Ceram., 71(7 – 8), 236 – 239 (2014). S. K. Evstrop’ev, A. N. Smirnov, and V. V. Sharypin, “Nanosize sintering additive based on B2O3 for obtaining ceramic from aluminum-magnesium spinel,” Steklo Keram., No. 7, 16 – 20 (2014); S. K. Evstrop’ev, A. N. Smirnov, and V. V. Sharypin, “Nanosize sintering additive based on B2O3 for obtaining ceramic from aluminum-magnesium spinel,” Glass Ceram., 71(7 – 8), 236 – 239 (2014).
33.
Zurück zum Zitat A. D. Gledhill, D. Li, T. Mroz, et al., “Strengthening of transparent Spinel/Si3N4 nanocomposites,” Acta Mater., 60, 1570 – 1575 (2012).CrossRef A. D. Gledhill, D. Li, T. Mroz, et al., “Strengthening of transparent Spinel/Si3N4 nanocomposites,” Acta Mater., 60, 1570 – 1575 (2012).CrossRef
34.
Zurück zum Zitat A. A. Kachaev, D. V. Grashchenkov, Yu. E. Lebedeva, et al., “Optically transparent ceramic (Review),” Steklo Keram., No. 4, 3 – 10 (2016); A. A. Kachaev, D. V. Grashchenkov, Yu. E. Lebedeva, et al., “Optically transparent ceramic (Review),” Glass Ceram., 73(3 – 4), 117 – 123 (2016). A. A. Kachaev, D. V. Grashchenkov, Yu. E. Lebedeva, et al., “Optically transparent ceramic (Review),” Steklo Keram., No. 4, 3 – 10 (2016); A. A. Kachaev, D. V. Grashchenkov, Yu. E. Lebedeva, et al., “Optically transparent ceramic (Review),” Glass Ceram., 73(3 – 4), 117 – 123 (2016).
Metadaten
Titel
Methods of Synthesizing Alumomagnesium Spinel Powders for Obtaining Transparent Ceramic (Review)
verfasst von
M. O. Senina
D. O. Lemeshev
V. A. Kolesnikov
Publikationsdatum
18.01.2018
Verlag
Springer US
Erschienen in
Glass and Ceramics / Ausgabe 9-10/2018
Print ISSN: 0361-7610
Elektronische ISSN: 1573-8515
DOI
https://doi.org/10.1007/s10717-018-9994-8

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