NON-CONVENTIONAL COLD PREPARATION OF CELLULAR GLASS UNDER ECONOMICAL AND ENVIRONMENTALLY FRIENDLY CONDITIONS

Peculiarities of the modern cellular concrete manufacturing technique were borrowed in the expanding glass technique at ambient temperature presented in the work. Using aluminum dust in calcium hydroxide solution and adding carboxymethyl cellulose (CMC) as a froth fixer, cellular glass specimens wit...

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Published inRevista de Tehnologii Neconventionale Vol. 28; no. 1; pp. 23 - 30
Main Authors Paunescu, Lucian, Axinte, Sorin Mircea, Volceanov, Enikö, Paunescu, Bogdan Valentin
Format Journal Article
LanguageEnglish
Published Sibiu Romanian Association for Nonconventional Technologies (ARTN) 01.03.2024
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Abstract Peculiarities of the modern cellular concrete manufacturing technique were borrowed in the expanding glass technique at ambient temperature presented in the work. Using aluminum dust in calcium hydroxide solution and adding carboxymethyl cellulose (CMC) as a froth fixer, cellular glass specimens with excellent insulating properties with minimal energy consumption could be experimentally obtained, as an alternative solution to conventional methods industrially used. The tests presented in this article intend to improve the mechanical resistance of the cellular product under the conditions of preserving existing insulating properties by adding to the starting mixture a very effective ultrafine powder (silica fume) contributing to the increase of strength and durability. Completing the manufacturing recipe with silica fume is the originality element compared to the previously applied solutions. The results confirmed the effectiveness of the new method, the compressive strength increasing up to 4.7 MPa under conditions of density below 0.35 g·cm-3 and heat conductivity below 0.079 W·m-1·K-1.
AbstractList Peculiarities of the modern cellular concrete manufacturing technique were borrowed in the expanding glass technique at ambient temperature presented in the work. Using aluminum dust in calcium hydroxide solution and adding carboxymethyl cellulose (CMC) as a froth fixer, cellular glass specimens with excellent insulating properties with minimal energy consumption could be experimentally obtained, as an alternative solution to conventional methods industrially used. The tests presented in this article intend to improve the mechanical resistance of the cellular product under the conditions of preserving existing insulating properties by adding to the starting mixture a very effective ultrafine powder (silica fume) contributing to the increase of strength and durability. Completing the manufacturing recipe with silica fume is the originality element compared to the previously applied solutions. The results confirmed the effectiveness of the new method, the compressive strength increasing up to 4.7 MPa under conditions of density below 0.35 g·cm-3 and heat conductivity below 0.079 W·m-1·K-1.
Author Paunescu, Lucian
Axinte, Sorin Mircea
Paunescu, Bogdan Valentin
Volceanov, Enikö
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SubjectTerms Aluminum
Ambient temperature
Carboxymethyl cellulose
Cellular manufacture
Cellulose
Compressive strength
Energy consumption
Heat conductivity
Manufacturing
Oxidation
Recycling
Silica
Silica fume
Slaked lime
Temperature
Thermal conductivity
Ultrafines
Title NON-CONVENTIONAL COLD PREPARATION OF CELLULAR GLASS UNDER ECONOMICAL AND ENVIRONMENTALLY FRIENDLY CONDITIONS
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Volume 28
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