The Subsidence Analysis of Experimental Post-Tensioned Concrete Slab Model in the Course of the Static Load Test

Author:

Mynarcik Petr1

Affiliation:

1. VSB – Technical University of Ostrava

Abstract

This article presenting results of subsidence measurement on experimental post-tensioned concrete slab model during static load test. This subsidence measurement was realized on the large scale concrete slab model and brought important data for computer modeling by FEM (finite element method). The experiment simulated the load effect of the base plate of heavy rack. In the course of the static load test subsidence was measured by set of potentiometric gauges at the particular points in real time. The experiment continue on research activity focused on problematic of interaction between concrete structures and subsoil and was realized at the Faculty of Civil Engineering, VSB – Technical University of Ostrava, Czech Republic.

Publisher

Trans Tech Publications, Ltd.

Reference8 articles.

1. P. Mynarcik, Measurement processes and destructive testing of fibre concrete foundation slab pattern, Advanced Material Research, vol. 1020, pp.221-226 (6 p), Trans Tech Publications, Switzerland, ISSN (Online) 1662-8985, ISSN (Print) 1022-6680, DOI: 10. 4028/www. scientific. net/AMR. 1020. 221, (2014).

2. V. Buchta, P. Mynarcik, Experimental testing of fiberconcrete foundation slab model, Applied Mechanics and Materials, vol. 501 – 504, pp.291-294 (4 p), Trans Tech Publications, Switzerland, doi: 10. 4028/www. scientific. net/AMM. 501-504. 291, (2014).

3. V. Buchta, Experimental testing the interaction of fiber-concrete foundation slab and subsoil and compare the results with numerical models, Advanced Material Research, vol. 1020, pp.227-232 (6 p), Trans Tech Publications, Switzerland, ISSN (Online) 1662-8985, ISSN (Print) 1022-6680, DOI: 10. 4028/www. scientific. net/AMR. 1020. 227, (2014).

4. R. Cajka, V. Krivy, D. Sekanina, Design and Development of a Testing Device for Experimental Measurements of Foundation Slabs on the Subsoil, Transactions of the VŠB – Technical University of Ostrava, Civil Engineering Series, vol. XI, iss. 1, pp.1-6 (6 p), ISSN (Online)1804-4824, ISBN 978-80-248-2332-4, doi: 10. 2478/v10160-011-0002-2, (2011).

5. M. Janulikova, P. Mynarcik, Modern Sliding Joints in Foundations of Concrete and Masonry Structures, International Journal of Mechanics, vol. 8, iss. 1, United States: North Atlantic University Union, pp.184-189 (6 p), ISSN 1998-4448, (2014).

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