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Structure and Properties of Highly Porous Alumina-Based Ceramic Materials after Heating by Concentrated Solar Radiation

В. Г. БабашовNRC “Kurchatov Institute”-VIAM, 105005 Moscow, RussiaС. Х. СулеймановPhysical-Technical Institute of SPA “Physics-Sun”, Academy of Sciences of the Republic of Uzbekistan, Tashkent 100084, UzbekistanM. I. DaskovskiiNRC “Kurchatov Institute”-VIAM, 105005 Moscow, RussiaЕ.А. SheinNRC “Kurchatov Institute”-VIAM, 105005 Moscow, RussiaYurii V. StolyankovNRC “Kurchatov Institute”-VIAM, 105005 Moscow, Russia
Ceramicsjournal2021en
ABI

Annotatsiya

Three ceramic fibrous materials of the Al2O3-SiO2 system with different densities have been treated using concentrated solar radiation. The experiment was performed using technological capabilities of the Big Solar Furnace in the 2 modes: the first mode includes heating up to 1400–1600 °C, holding for 1.5–2 h; the second mode (the fusion mode) includes heating up to 1750–1900 °C until the sample destruction, which is accompanied by fusion. Upon completion of the experiment, the phase composition, microstructure, and compressive strength of the materials were studied. It was shown that the investigated materials retained their fibrous structure under prolonged treatment in the first mode up to temperatures of 1600 °C. The phase composition of the ceramic materials changes during the experiment, and with a decrease in the density, the modification is more pronounced. Treatment of all three materials under study in the fusion mode resulted in the formation of the eutectic component in the form of spherulites. The compressive strength of the materials was found to be slightly reduced after exposure to concentrated solar radiation.

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