Computer Modelling when Selecting the Activated Mineral Powders Compositions

Article Preview

Abstract:

When selecting the compositions and studying the properties of the activated mineral powders based on superacid fly ash, mineral and organic activating agents, the computer modelling was performed. The activated mineral powders compositions corresponding to the properties of GOST 32761 2014 requirements to the MP-1 activated mineral powders of carbonate rocks were selected using the experiment mathematical planning method. When processing the experimental data for obtaining the adequate mathematical model, optimizing the compositions and constructing the graphical dependencies, the Maple package was used. The software for the personal computer including the algorithm and se-lection program of the activated mineral powders compositions was developed. The software makes it possible to automate the calculation of the activated mineral powders formulas with the specified technical properties.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

876-882

Citation:

Online since:

May 2020

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2020 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] L.B. Gezentsvej, Asphalt Concrete of Activated Mineral Materials, Stroyizdat, Moscow, 1971. Russian.

Google Scholar

[2] L.B. Gezentsvej et al., The Road Asphalt Concrete, Transport, Moscow, (1985).

Google Scholar

[3] Ja.N. Kovalev, Activation Technologies of Road Composites, Academic and Research Foundations, Belarusky encyclopedia, Minsk, 2002, P. 334.

Google Scholar

[4] J.C. Peterson, E.K. Ensley, F.A. Barbour, Molecular interaction of asphalt in the asphalt - aggregate interface region, Transp. Res. Rec. 515 (1974) 67-68.

Google Scholar

[5] G.A. Rastegaeva, Active and Activated Mineral Powders of the Industrial Wastes, Publishing house VorGASU, Voronezh, (2002).

Google Scholar

[6] N.I. Jarmolinskaja, L.S. Tsupikova, Asphalt concrete corrosion resistance improvement on the basis of TPP wastes, Construction Materials. 9 (2007) 46–47.

Google Scholar

[7] V.S. Lesovik, V.S. Prokopets P.A. Boldyrev, Mineral powders of acid composition rocks, The Construction Materials. 8 (2005) 44–46.

Google Scholar

[8] M.S. Lebedev, V.V. Strokova, I.V. Zhernovskij, I.Yu. Potapov, The properties variation of the mineral powders of aluminosilicate raw material under the influence of thermal modification, The Construction Materials. 9 (2012) 68–70.

Google Scholar

[9] M. Augambaev, A.Z. Ivanov, Yu.I. Terekhov, Scientific Research Experiment Planning Foundations, Ukitavchi, Tashkent, (2004).

Google Scholar

[10] V.V. Nalimov, N.A. Chernova, The Statistical Methods of Extreme Experiments Planning, Statistics, Moscow, (1992).

Google Scholar

[11] V.D. Galdina, M.S. Chernogorodova, Selection of activated mineral powders compositions selection using the experiment planning method, Herald of SibADI. 2(54) (2017) 90-98.

DOI: 10.26518/2071-7296-2017-2(54)-90-98

Google Scholar

[12] T.A. Nizina, A.S. Balykov, The experimental and statistic models of the modified fiber-reinforced fine concretes properties, Magazine of Civil Engineering. 2(62) (2016) 13–26.

DOI: 10.5862/mce.62.2

Google Scholar

[13] I.L. Chulkova, T.A. Sankova, Computer-Assisted Design of the Concrete Mixture Compositions, SibADI, Omsk, (2009).

Google Scholar

[14] V.S. Prokopets, T.A. Ivanova, Road Asphalt Concrete Modification by the Rubber Powders Obtained by Mechanical Activation, SibAdI, Omsk, (2012).

Google Scholar

[15] V.D. Galdina, N.S. Galdin, Optimization of Temperatures of Hashing Asphaltic Concrete Mixes Taking into Account the Structural Type of Bitumen in 2018 Materials Science Forum Int. Sci. Conf. on FarEastCon. 945 (2018) 226–232.

DOI: 10.4028/www.scientific.net/msf.945.226

Google Scholar

[16] M.I. Kuchma, Surfactants in Road Building, Transport, Moscow, (1980).

Google Scholar

[17] V.Z. Brodsky, L.I. Brodsky, T.I. Golikova et al., Experiment Plan Tables of the Factor and Polynomial Models: a Reference Book, Metallurgy, Moscow, (1982).

Google Scholar

[18] V.D. Galdina, N.S. Galdin, M.S. Chernogorodova, The activated mineral powders compositions selection algorithm on the basis of fly ash, The Registration Certificate of the Electronic Resource, No. 22738, (2017).

Google Scholar

[19] V.D. Galdina, N.S. Galdin, M.S. Chernogorodova, Activated mineral powders compositions calculation on the basis of fly ash, The Official Registration Certificate of the Computer Program, No. 2017662642, (2017).

Google Scholar

[20] G.Z. Garber, Programming grounds on Visual Basic and VBA Programming in Excel, Solon Press, Moscow, (2008).

Google Scholar

[21] R. A. Ibragimov, E. V. Korolev, T. R. Deberdeev, V. V. Leksin, D. B. Solovev, Energy Parameters of the Binder during Activation in the Vortex Layer Apparatus Materials Science Forum, 945 (2019) 98-103. [Online]. Available: https://doi.org/10.4028/www.scientific.net/MSF.945.98.

DOI: 10.4028/www.scientific.net/msf.945.98

Google Scholar