INFLUENCE OF THE PARAMETERS OF AN ALUMOSILICATE ADDITIVE BASED ON MOUNTAIN SAND ON THE PROPERTIES OF SULFATE-RESISTANT PORTLAND CEMENT

Author:

Vasileva D.1,Popov A.1,Mestnikov A.1

Affiliation:

1. M. K. Ammosov North-Eastern Federal University

Abstract

The paper substantiates the effectiveness and prospects of research in the direction of developing an active mineral additive based on mountain sand of Yakutia for general construction cements in order to increase its sulfate resistance. This will expand the range of application of Portland cements operating in conditions of sulfate aggression. The Republic of Sakha (Yakutia) has many deposits of natural sands of aluminosilicate composition or the so-called "mountain sands". One of the large and developed quarries of mountain sands in Yakutia is the Kildyamskoye deposit. Today it is used for foundations and underlying road surfaces. The paper shows the possibility of obtaining an active mineral additive based on this sand. The influence of the dosage and dispersion level of the additive on the strength characteristics of cements and on the coefficient of sulfate resistance is studied in the range of 5±2 % while maintaining brand strength. The introduction of an additive of more than 15 % reduces the strength of cement by an average of 20%, the grade strength is no longer observed, while hydration processes slow down and over time in a sulfate environment, the strength of the samples first increases and then falls again. As a result of the work, an active mineral additive based on the sand of the Kildyamskoe deposit in cement is proposed. This gives a stable sulfate resistance coefficient equal to 0.95 while maintaining brand strength and hydration processes.

Publisher

BSTU named after V.G. Shukhov

Subject

Psychiatry and Mental health,Neuropsychology and Physiological Psychology

Reference16 articles.

1. Толыпина Н.М., Щигорева Е.M., Головин М. В., Щигорев Д.С. Повышение коррозионной стойкости бетонов путем применения активных заполнителей второго типа // Вестник БГТУ им. В.Г. Шухова. 2019. №. 2. С. 27–32. DOI: https://doi.org/10.12737/article_5c73fbf6df9f53.10093605., Tolypina N.M., Shigoreva E.M., Golovin M.V., Shigorev D.S. Increase of concrete inoxidizability by application of active fillers of the second type [Povysheniye korrozionnoystoykosti betonov putem primeneniya aktivnykh zapolniteley vtorogo tipa]. Bulletin of BSTU named after. V. G. Shukhov. 2019. Vol. 4. No. 2. Pp. 27–32. DOI: https://doi.org/10.12737/article_5c73fbf6df9f53.10093605.

2. Толыпина Н.М., Щигорева Е.М., Головин М.В., Щигорев Д.С. Сульфатостойкость бетона на основе химически активного заполнителя из нефелинсодержащих пород // Вестник БГТУ им. В.Г. Шухова. 2017. №. 10. С. 21–26. DOI: https://doi.org/10.12737/article_59cd0c585e1768.86979091., Tolypina N.M., Shigoreva E.M., Golovin M.V., Shigorev D.S. Sulphate resistance of concrete made from reactive filler based on nepheline bearing rocks [Sul'fatostoykost' betona na osnove khimicheskiaktivnogo zapolnitelya iz nefelinsoderzhashchikh porod]. Bulletin of BSTU named after V.G. Shukhov. 2017. Vol. 2. No. 10. Pp. 21–26. DOI: https://doi.org/10.12737/article_59cd0c585e1768.86979091.

3. Бердов Г.И., Камха М.А., Парубов А.Г., Себелев И.М. Влияние ультразвуковой активации воды на гидратацию и твердение цемента и трехкальциевого алюмината // Известия высших учебных заведений. Строительство и архитектура. 1991. №. 8. С. 53–56., Berdov G.I., Kamkha M.A., Parubov A.G., Sebelev I.M. Influence of ultrasonic activation of water on hydration and hardening of cement and tricalcium aluminate [Vliyaniye ul'trazvukovoy aktivatsii vody na gidratatsiyu I tverdeniye tsementa I trekhkal'tsiyevogo alyuminata]. Izvestia of higher educational institutions. Construction and architecture. 1991. No. 8. Pp. 53–56.

4. Фролов Н.В. Экспериментальные исследования кинетики развития коррозионных повреждений бетона в изгибаемых железобетонных элементах при силовых и средовых воздействиях // Вестник БГТУ им. В.Г. Шухова. 2020. №. 2. С. 34–43. DOI: https://doi.org/10.34031/2071-7318-2020-5-2-34-43., Frolov N. Experimental studies of the kinetics of the developmental corrosive damages of concrete in bent reinforced concrete elements under force and environmental effects [Eksperimental'nyye issledovaniya kinetiki razvitiya korrozionnykh povrezhdeniy betona v izgibayemykh zhelezobetonnykh elementakh pri silovykh I srednikh vozdeystviyakh]. Bulletin of BSTU named after V.G. Shukhov. 2020. No. 2. Pp. 34–43. DOI: https://doi.org/10.34031/2071-7318-2020-5-2-34-43.

5. Borges Marinho A.L., Mol Santos С.М., Franco de Carvalho J.M., Mendes J.C. Ladle furnace slag as binder for cement-based composites // Journal of Materials in Civil Engineering. American Society of Civil Engineers. 2017. №. 11(29). 04017207., Borges Marinho A.L., Mol Santos C.M., Franco de Carvalho J.M., Mendes J.C. Ladle furnace slag as binder for cement-based composites. Journal of Materials in Civil Engineering. American Society of Civil Engineers. 2017. Vol. 29. No. 11. 04017207.

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