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Erschienen in: Glass and Ceramics 5-6/2013

01.09.2013

Process parameter optimization for synthesis of high-silica liquid-glass composites for construction

verfasst von: N. Yu. Mikhailenko, N. N. Klimenko

Erschienen in: Glass and Ceramics | Ausgabe 5-6/2013

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Abstract

The technological factors intensifying hardening and structure-formation in the system quartz-sand – liquidglass are studied. The temperature-moisture conditions for the solidification of compositions, filler dispersity, modifier form and amount and quantitative ratio of the components of the raw materials mix are optimized. High-silica liquid-glass construction-grade composites with high mechanical strength and water-resistance are worked out.

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Literatur
1.
Zurück zum Zitat V. D. Glukhovskii, Hydrosilicates [in Russian], Gos. Izd. Stroitel’stvu i Arkhitekture Ukr. SSR, Kiev (1959). V. D. Glukhovskii, Hydrosilicates [in Russian], Gos. Izd. Stroitel’stvu i Arkhitekture Ukr. SSR, Kiev (1959).
2.
Zurück zum Zitat Yu. G. Ivashcheno, and R. V. Fomin, “Liquid-glass composition, RF patent 2245861, MPK7 C04B28/26, No. 2002130689/03; November 15, 2002,” Published February 10, 2005, Byull. Izobr. Polezn. Modeli, No. 4 (2005). Yu. G. Ivashcheno, and R. V. Fomin, “Liquid-glass composition, RF patent 2245861, MPK7 C04B28/26, No. 2002130689/03; November 15, 2002,” Published February 10, 2005, Byull. Izobr. Polezn. Modeli, No. 4 (2005).
3.
Zurück zum Zitat V. T. Erofeev, V. F. Smirnov, E. V. Zavalishin, et al., “Silicate mixtures, RF Patent 2285681, MPK C04B28/26; No. 2003103200/03; February 3, 2003,” Published October 20, 2006; Byull. Izobr. Polezn. Modeli, No. 29 (2006). V. T. Erofeev, V. F. Smirnov, E. V. Zavalishin, et al., “Silicate mixtures, RF Patent 2285681, MPK C04B28/26; No. 2003103200/03; February 3, 2003,” Published October 20, 2006; Byull. Izobr. Polezn. Modeli, No. 29 (2006).
4.
Zurück zum Zitat I. N. Tikhomirova, and T. V. Skorina, “Polymer silicate-concrete mixture for fabrication of facing-decorative and construction articles, RF Patent 2386600, MPK C04B28/26; No. 2008145718/03; November 20, 2008,” Published April 20, 2010; Byull. Izobr. Polezn. Modeli, No. 11 (2010). I. N. Tikhomirova, and T. V. Skorina, “Polymer silicate-concrete mixture for fabrication of facing-decorative and construction articles, RF Patent 2386600, MPK C04B28/26; No. 2008145718/03; November 20, 2008,” Published April 20, 2010; Byull. Izobr. Polezn. Modeli, No. 11 (2010).
5.
Zurück zum Zitat A. M. Gromov, Yu. G. Afanas’ev, T. N. Perfil’eva and R. M. Levkina, “Method of fabricating no-roasting construction articles, RF Patent 2018498, MPK C04B28/26, No. 5063504/33; September 25, 1992,” Published August 30, 1994. A. M. Gromov, Yu. G. Afanas’ev, T. N. Perfil’eva and R. M. Levkina, “Method of fabricating no-roasting construction articles, RF Patent 2018498, MPK C04B28/26, No. 5063504/33; September 25, 1992,” Published August 30, 1994.
6.
Zurück zum Zitat N. Yu. Mikhailenko, N. N. Klimenko, and P. D. Sarkisov, “Construction materials based on liquid-glass binder. Pt. 1: Liquid glass as binder in the production of building materials,” Tekh. Tekhnol. Silikatov, 19(2), 25–28 (2012). N. Yu. Mikhailenko, N. N. Klimenko, and P. D. Sarkisov, “Construction materials based on liquid-glass binder. Pt. 1: Liquid glass as binder in the production of building materials,” Tekh. Tekhnol. Silikatov, 19(2), 25–28 (2012).
7.
Zurück zum Zitat V. T. Erofeev and S. A. Korotaev, “Structure formation of liquid-glass binder of large-pore ceramic material,” Stroit. Mater., No. 6, 64–65 (2006). V. T. Erofeev and S. A. Korotaev, “Structure formation of liquid-glass binder of large-pore ceramic material,” Stroit. Mater., No. 6, 64–65 (2006).
8.
Zurück zum Zitat G. S. Khodakov, Physics of Comminution [in Russian], Nauka, Moscow (1972). G. S. Khodakov, Physics of Comminution [in Russian], Nauka, Moscow (1972).
9.
Zurück zum Zitat L. M. Sulimenko and L. A. Urkhanova, “Activated limestonesilica binders and articles based on them,” Tekh. Tekhnol. Silikatov, No. 3 – 4, 17–21 (1995). L. M. Sulimenko and L. A. Urkhanova, “Activated limestonesilica binders and articles based on them,” Tekh. Tekhnol. Silikatov, No. 3 – 4, 17–21 (1995).
10.
Zurück zum Zitat A. V. Belyakov and V. N. Sigaev, Physical-Chemical Principles of Mechanical Comminution of Inorganic Non-Metallic Materials [in Russian], RKhTU im. D. I. Mendeleeva, Moscow (2001). A. V. Belyakov and V. N. Sigaev, Physical-Chemical Principles of Mechanical Comminution of Inorganic Non-Metallic Materials [in Russian], RKhTU im. D. I. Mendeleeva, Moscow (2001).
11.
Zurück zum Zitat I. N. Tikhomirova and T. V. Skorina, “Modification of quartz – liquid-glass composites with organic resins,” Steklo Keram., No. 10, 50–52 (2008); I. N. Tikhomirova and T. V. Skorina, “Modification of quartz – liquid glass composites with organic resins,” Glass Ceram., No. 10, 50–52 (2008). I. N. Tikhomirova and T. V. Skorina, “Modification of quartz – liquid-glass composites with organic resins,” Steklo Keram., No. 10, 50–52 (2008); I. N. Tikhomirova and T. V. Skorina, “Modification of quartz – liquid glass composites with organic resins,” Glass Ceram., No. 10, 50–52 (2008).
Metadaten
Titel
Process parameter optimization for synthesis of high-silica liquid-glass composites for construction
verfasst von
N. Yu. Mikhailenko
N. N. Klimenko
Publikationsdatum
01.09.2013
Verlag
Springer US
Erschienen in
Glass and Ceramics / Ausgabe 5-6/2013
Print ISSN: 0361-7610
Elektronische ISSN: 1573-8515
DOI
https://doi.org/10.1007/s10717-013-9535-4

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