Reinforced Concrete Frames under Distant Blast

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The article deals with the field tests of UHPFRC frames loaded by distant detonation of 50 kg of TNT and also by direct explosion of 120mm mortar shell. The paper analyses the results obtained from ultrasound diagnostics that was made before and after the explosion.

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229-235

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September 2017

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© 2017 Trans Tech Publications Ltd. All Rights Reserved

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[1] Zezulová, Eva; Štoller, Jiří. Non-destructive Testing of Materials Used for Protective Structures Built from High Performance Fibre Reinforced Concrete after the Contact Explosion Loading . In: 11th European Conference on Non-Destructive Testing (ECNDT 2014). Brno: Brno University of Technology FME, 2014, pp.1-12.

Google Scholar

[2] Štoller, Jiří; Zezulová, Eva. Testing of critical infrastructure protection against the distant trinitrotoluene blast. In: Transport Means 2015, Proceedings of the 19th International Scientific Conference. Kaunas, Litva: Kaunas University of Technology, 2015, pp.505-508.

Google Scholar

[3] Štoller, Jiří; Dvořák, Petr. Non-Destructive Testing of Full-Scale Slabs Before and after Blast Load. In: Proceedings of 19th International Scientific Conference Transport Means. Kaunas, Litva: Kaunas University of Technology, 2015, pp.298-301.

Google Scholar

[4] ŠTOLLER, Jiří; DVOŘÁK, Petr. Field Tests of High Performance Fiber Reinforced Concrete Slabs: Impact of Contact and Distant Explosions. In: ICMT 2015 International Conference on Military Technologies. Brno: University of Defence, 2015, pp.235-239.

DOI: 10.1109/miltechs.2015.7153679

Google Scholar

[5] ŠTOLLER, Jiří; DVOŘÁK, Petr. Evaluation of High Performance Concrete Samples under Explosive Blast Load. In: Transport Means 2016 - Proceedings of 20th International Scientific Conference. Kaunas, Litva: Kaunas University of Technology, 2016, pp.117-120.

Google Scholar

[6] Brožovský, J. Evaluation of frost resistance of calcium silicate masonry units with ultrasonic pulse and resonance methods. Russian Journal of Nondestructive Testing [online]. 2014, 50(10), 607-615 [cit. 2016-07-28]. DOI: 10. 1134/S1061830914100039. ISSN 1061-8309.

DOI: 10.1134/s1061830914100039

Google Scholar

[7] Brožovský, J., Bodnárová, L. Contribution to the issue of evaluating the compressive strength of concrete exposed to high temperatures using the Schmidt rebound hammer. Russian Journal of Nondestructive Testing [online]. 2016, 52(1), 44-52 [cit. 2016-07-28]. DOI: 10. 1134/S1061830916010046. ISSN 1061-8309.

DOI: 10.1134/s1061830916010046

Google Scholar

[8] Brožovský, J. High-strength concrete – NDT with rebound hammer: influence of aggregate on test results. Nondestructive Testing and Evaluation [online]. 2014, 29(3), 255-268 [cit. 2016-07-28]. DOI: 10. 1080/10589759. 2014. 926897. ISSN 1058-9759.

DOI: 10.1080/10589759.2014.926897

Google Scholar

[9] Blitz, J., Simpson, G. Ultrasonic Methods of Non-destructive Testing: Non destructive evaluation. 1. London: Chapman & Hall, 1996. ISBN 0-412-60470-1.

Google Scholar

[10] Sack, D. A., Olson, L. D., Advanced NDT methods for evaluating concrete bridges and other strucutres. NDT & E International, Volume 28, Issue 6, 1995, Pages 349-357, ISSN 0963-8695. DOI: 10. 1016/0963-8695(95)00045-3.

DOI: 10.1016/0963-8695(95)00045-3

Google Scholar

[11] Figuli, L., Magura, M., Kavický, V., Jangl, Š. Application of Recyclable Materials for an Increase in Building Safety against the Explosion of an Improvised Explosive Device. Advanced Materials Research Vol. 1001 (2014).

DOI: 10.4028/www.scientific.net/amr.1001.447

Google Scholar

[12] Figuli, L., Papan, D. Single Degree of Freedom Analysis of Steel Beams under Blast Loading. Applied Mechanics and Materials Vol. 617 (2014) pp.92-95. Trans Tech Publications, Switzerland 2014. doi: 10. 4028/www. scientific. net/AMM. 617. 92.

DOI: 10.4028/www.scientific.net/amm.617.92

Google Scholar

[13] Kavicky, V., Figuli, L., Jangl, S., Ligasová, Z. Analysis of the Field Test Results of Ammonium Nitrate: Fuel Oil Explosives as Improvised Explosive Device Charges (2014).

DOI: 10.2495/susi140261

Google Scholar