New Composite Dispersion Reinforcement Materials with Modulated Characteristics

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Abstract:

The Institute of Civil Engineering of the "Ural Federal University Named after the first President of Russia B.N. Yeltsin" (UrFU) has carried out the research to improve the deformation-strength characteristics of the most common building material, i.e. concrete. One method to improvement the properties is the disperse reinforcement of the entire volume of concrete with fine fibers. The research and mathematical modeling of the dependence of the characteristics of the composite material on the properties of the dispersed phase (the properties of the fiber material of the fiber) and the dispersion medium (the structure of the concrete) will allow in-situ prediction of the strength of the structures being manufactured and to determine the ratio and quality of the raw feed components of the mixture.

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Periodical:

Solid State Phenomena (Volume 265)

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227-230

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Online since:

September 2017

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© 2017 Trans Tech Publications Ltd. All Rights Reserved

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[1] F.N. Rabinovich, Compos on the basis of the dispersible-reinforced concretes, Questions of theory and design, technology, constructions, publishing house ASV, Moscow, (2011).

Google Scholar

[2] K.V. Talantova, M.D. Sonina, Methodology construction design on base steel fiber concrete with specified service parameters, International Journal for Computational Civil and Structural Engineering, 8 (2012) 108-117.

Google Scholar

[3] Yu.V. Puharenko, V.E. Morozov, The efficiency of fiber concrete application in constructions subjected to dynamic effects, Bulletin MSBU, 3(2014) 189-196.

Google Scholar

[4] S.V. Moskovsky, A.S. Noskov, V.S. Rudnov, V.N. Alehin, The effect of particulate reinforcement on the deformation-strength properties of concrete, Academic Bulletin UralNIIProject, 3 (2016) 67-71.

Google Scholar

[5] V. Rudnov, V. Belyakov, S. Moskovsky, Properties and Design Characteristics of the Fiber Concrete, Procedia Engineering, 150 (2016) 1536-1540.

DOI: 10.1016/j.proeng.2016.07.107

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