Porous Articles with Rigid Structure Based on Natural Amorphous Silica
The development of new technology for producing foam glass from materials containing natural amorphous silica was studied. The optimal process parameters for the production of articles with a prescribed geometric shape and dimensions are shown. Theoretical validation is given for the organization of...
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Published in | Glass and ceramics Vol. 75; no. 1-2; pp. 12 - 16 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
New York
Springer US
01.05.2018
Springer |
Subjects | |
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Abstract | The development of new technology for producing foam glass from materials containing natural amorphous silica was studied. The optimal process parameters for the production of articles with a prescribed geometric shape and dimensions are shown. Theoretical validation is given for the organization of technological processes. The results of studies of the properties of the obtained materials are presented. |
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AbstractList | The development of new technology for producing foam glass from materials containing natural amorphous silica was studied. The optimal process parameters for the production of articles with a prescribed geometric shape and dimensions are shown. Theoretical validation is given for the organization of technological processes. The results of studies of the properties of the obtained materials are presented. |
Audience | Academic |
Author | Kursilev, K. V. Lotov, V. A. Gubanov, A. V. Kutugin, V. A. |
Author_xml | – sequence: 1 givenname: V. A. surname: Kutugin fullname: Kutugin, V. A. email: kutugin@gmail.com organization: Tomsk Polytechnic University (TPU) – sequence: 2 givenname: V. A. surname: Lotov fullname: Lotov, V. A. organization: Tomsk Polytechnic University (TPU) – sequence: 3 givenname: A. V. surname: Gubanov fullname: Gubanov, A. V. organization: Siberian State Medical University (SibSMU) – sequence: 4 givenname: K. V. surname: Kursilev fullname: Kursilev, K. V. organization: Private enterpreneur |
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Keywords | foam glass amorphous silica foaming porization |
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References | V. A. Lotov and V. A. Kutugin, “Composition of batch and method of producing foamed heat-insulating material, RF Patent 2606539,” Byull. Izobr. Polezn. Modeli, No. 1 (2017), published January, 2017. V. A. Lotov and V. A. Kutugin, “Composition of batch and method of producing foam glass, RF Patent 2608095,” Byull. Izobr. Polezn. Modeli, No. 2 (2017), published January 13, 2017. A. A. Ketov and A. V. Tolmachev, “Foam glass—technological realities and the market,” Stroit. Mater., No. 1, 17 – 23 (2015). O. V. Kaz’mina, “Principles of the technology of foam ceramic materials from siliceous raw material at temperatures 800 –900°C,” Tekh. Tekhnol. Silikatov, No. 2 (2010). P. A. Ketov, “Production of construction materials from hydrated polysilicates,” Stroit. Mater., No. 11, 22 – 24 (2012). V. A. Lotov and V. A. Kutugin, “Method of producing foam glass and batch for its fabrication, RF Patent 2478587,” Byull. Izobr. Polezn. Modeli, No. 10 (2013), published April 10, 2013. V. A. Lotov and V. A. Kutugin, “Method of producing heat insulating material and batch for its fabrication, RF Patent 2478586,” Byull. Izobr. Polezn. Modeli, No. 10 (2013), published April 10, 2013. V. A. Lotov, V. I. Vereshchagin, and Yu. V. Pasechnikov, “Method of producing liquid glass by hydrothermal synthesis, RF Patent 2312817, IPC, MPK 6C 01 B 33/32,” Byull. Izobr. Polezn. Modeli, No. 19 (1999), published July 10, 1999. A. I. Nikitin, G. I. Storozhenko, L. K. Kazatseva, and V. I. Vereshchagin, “Heat-insulating materials and articles based on trepels from the Potaninskoe deposit,” Stroit. Mater., No. 8, 34 – 36 (2014). K. S. Ivanov, S. S. Radaev, and O. I. Selezneva, “Diatomites in granular foam-glass technology,” Steklo Keram., No. 5, 15 – 19 (2014); K. S. Ivanov, S. S. Radaev, and O. I. Selezneva, “Diatomites in granular foam-glass technology,” Glass Ceram., 71(5 – 6), 157 – 161 (2014). L. K. Kazantseva, G. I. Storozhenko, A. I. Nikitin, and G. A. Kiselev, “Insulating material based on opoka raw material,” Stroit. Mater., No. 5, 85 – 88 (2013). O. V. Kaz’mina, V. I. Vereshchagin, B. S. Semukhin, and A. N. Abiyaka, “Low-temperature synthesis of granular glass from mixes based on silica-alumina-containing components for obtaining foam materials,” Steklo Keram., No. 10, 5 – 8 (2009); O. V. Kaz’mina, V. I. Vereshchagin, B. S. Semukhin, and A. N. Abiyaka, “Low-temperature synthesis of granular glass from mixes based on silica-alumina-containing components for obtaining foam materials,” Glass Ceram., 66(9 – 10), 341 – 344 (2009). V. A. Lotov and V. A. Kutugin, “Method of producing foamed material and batch for its fabrication, RF Patent 2520280,” Byull. Izobr. Polezn. Modeli, No. 17, published June 20, 2014. 19_CR3 19_CR4 19_CR5 cr-split#-19_CR2.2 19_CR1 cr-split#-19_CR2.1 19_CR13 cr-split#-19_CR7.1 19_CR12 cr-split#-19_CR7.2 19_CR11 19_CR10 19_CR6 19_CR8 19_CR9 |
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SubjectTerms | Ceramics Characterization and Evaluation of Materials Chemistry and Materials Science Composites Glass Locks (Security devices) Materials Science Natural Materials Silicon dioxide |
Title | Porous Articles with Rigid Structure Based on Natural Amorphous Silica |
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