Software Processing of the Test Results of Building Materials

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Abstract:

A method for processing data from tests of building materials is proposed in order to identify the optimal functional relationships between the physicomechanical characteristics and the technological parameters of building materials. The least squares method (MLS) was used and to improve the accuracy of calculations, a three-level optimization of calculations was introduced using groups of transforming functions (180 items). Taking into account the increased volume of statistical computations, computer subroutines have been developed, which, together with standard MLS computational programs, make it possible to realize the choice of the indicated optimal functional connections.

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121-128

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December 2019

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] A.Arzumanyan, M. Badalyan, A.Karapetyan et al., Research methods for the physicomechanical general characteristics of building materials, tutorial-practical guide, NUACA, Yerevan, (2017).

Google Scholar

[2] Building materials: Tutorial-handbook, Phoenix, Rostov N / D, (2004).

Google Scholar

[3] Lyapidevskaya O., Concrete, Specifications. Test methods. Comparative analysis of Russian and European building codes, Tutorial. MSCU, Moscow, (2013).

Google Scholar

[4] P.M. Zhuk, Assessment of the quality of building materials in accordance with the requirements of foreign standards, Architecture – S, Moscow, (2006).

Google Scholar

[5] L.N. Alexandrovskaya, L.N. Aronov, V.I. Kruglov, Safety and reliability of technical systems: Tutorial, Logos, Moscow, (2008).

Google Scholar

[6] D.А. Gursky, Е.S. Turbina, Calculations in MathCad12, Peter, Saint Petersburg, (2005).

Google Scholar

[7] V.A. Ostreykov, Reliability Theory, High. School, Moscow, (2008).

Google Scholar

[8] M.G. Stakyan, T.E. Jrbashyan, Automation of the search for the optimal scheme of fatigue testing, Proceedings of the X scientific. conf. Planning and automation of experiment in scientific researches,. (1992) 75-76.

Google Scholar

[9] M.G Stakyan, Reliability of machines and mechanisms V.1, Publisher of the SEUA (P), Yeravan, (2005).

Google Scholar

[10] M. G. Stakyan, G. G. Mirakyan, E.A. Margaryan, Mathematical modeling of the process of corrosion fatigue fracture, Bulletin of EAA. 7 (2) (2010) 194-200.

Google Scholar