Multi-Functional High-Performance Cement Based Composite

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The paper introduces development of new type of high-performance Portland cement based composite applicable for number of practical utilization. The fundaments of performed research was to design mixture with controlled process of hydration, easy production, suitable time of setting, good workability and rapid evolution of mechanical properties as well as satisfactory long-term stability of hardened composite. Selected mixture were evaluated by means of mechanical properties and volume changes determination.

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53-56

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January 2016

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© 2016 Trans Tech Publications Ltd. All Rights Reserved

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[1] P.C. Aitcin, High-performance concrete, Prague, (2005).

Google Scholar

[2] M. Collepardi, Modern Concrete. ČKAIT, Prague, (2009).

Google Scholar

[3] P. Konvalinka, J. Litoš, D. Jandeková, Volume Changes of Cement Pastes Using Metakaolin, in: M. Ruzicka, K. Doubrava, Z. Horak (Eds. ),  Proceedings of the 50th Annual Conference on experimental stress analysis, Tabor, Czech Republic, pp.211-216, (2012).

Google Scholar

[4] P. Reiterman, M. Jogl, V. Baumelt, J. Seifrt, Development and mix design of HPC and UHPFRC, Advanced Materials Research 982 (2014) 130-135.

DOI: 10.4028/www.scientific.net/amr.982.130

Google Scholar

[5] K. Dvořák, M. Fridrichová, P. Dobrovolný, Influence of different grinding types on granulometry of recycled glass. In Construction Materials and Structures, South Africa, IOS Press. 2014. pp.305-310. ISBN 978-1-61499-465-7.

Google Scholar

[6] P. Máca, R. Sovják, P. Konvalinka, Mix design of UHPFRC and its response to projectile impact, International Journal of Impact Engineering 63 (2014) 158-163.

DOI: 10.1016/j.ijimpeng.2013.08.003

Google Scholar

[7] L. Bodnarova, T. Jarolim, J. Valek, J. Brozovsky, R. Hela, Selected Properties of Cementitous Composites with Portland Cements and Blended Portland Cements in Extreme Conditions, Applied Mechanics and Materials 507 (2014) 443-448.

DOI: 10.4028/www.scientific.net/amm.507.443

Google Scholar

[8] O. Holčapek, P. Reiterman, M. Jogl, P. Konvalinka, Comparison of Refractory and Non-refractory Components in Cement Composites after High Temperatures Load, Advanced Materials Research 1054 (2014) 33-36.

DOI: 10.4028/www.scientific.net/amr.1054.33

Google Scholar

[9] L. Bodnarová, D. Horák, J. Válek, R. Hela, L. Sitek, Possibilities of observation of behaviour of concrete- and cement-based composite materials exposed to high temperatures, Materials Research Innovations 19 (2015) 936-940.

DOI: 10.1179/1432891714z.0000000001225

Google Scholar

[10] M. Keppert, E. Vejmelková, R. Černý, S. Švarcová, P. Bezdička, Microstructural changes and residual properties of fiber reinforced cement composites exposed to elevated temperatures, Cement Wapno Beton, 2012, Vol. 17/79, no. 2, pp.77-89.

Google Scholar

[11] J. Zatloukal, P. Bezdička, Analysis of Powder Samples Extracted from Concrete Structures of Nuclear Plant, Advanced Materials Research 1054 (2014) 1-5.

DOI: 10.4028/www.scientific.net/amr.1054.1

Google Scholar

[12] M. Jogl, P. Reiterman, O. Holčapek, J. Koťátková, Proposal of Fire Resistant Composites with Application of Lightweight Aggregate Liaver, Advanced Materials Research 1054 (2014) 43-47.

DOI: 10.4028/www.scientific.net/amr.1054.43

Google Scholar

[13] M. Čáchová, D. Koňáková, E. Vejmelková, M. Keppert, P. Reiterman, A. Krojidlová, R. Černý, Mechanical and thermal properties of composites containing waste coir pith, Advanced Materials Research 1054 (2014) 238-242.

DOI: 10.4028/www.scientific.net/amr.1054.238

Google Scholar

[14] J. Koťátková, P. Reiterman, Effects of Different Types of Steel Fibers on the Mechanical Properties of High Strength Concrete, Advanced Materials Research 1054 (2014) 80-84.

DOI: 10.4028/www.scientific.net/amr.1054.80

Google Scholar

[15] O. Holčapek, F. Vogel, T. Vavřiník, M. Keppert, Time progress of compressive strength of high performance concrete, Applied Mechanics and Materials 486 (2014) 167-172.

DOI: 10.4028/www.scientific.net/amm.486.167

Google Scholar