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Modern acoustic techniques for testing concrete structures accessible from one side only

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Języki publikacji
EN
Abstrakty
EN
This paper presents nondestructive methodologies for investigating selected geometrical and material imperfections in unilaterally accessible concrete structures by means of modern acoustic techniques. The imperfections include: improper structure thickness, delamination, large air voids and zones of concrete macroheterogeneities. The presentation of the methodologies is preceded by a survey of the literature on the subject. The available knowledge, also contributed by the present author, has been collected and systematized as well as complemented with two new methodologies for determining the depth of cracks. The methodologies have been validated in situ on building structures whereby their practical usefulness has been confirmed.
Rocznik
Strony
1149--1159
Opis fizyczny
Bibliogr. 40 poz., tab., wykr.
Twórcy
  • Faculty of Civil Engineering, Wrocław University of Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland
Bibliografia
  • [1] J. Bień, Damage to Bridge Structures and Its Diagnosis, Wydawnictwo Komunikacji i Łączności Warsaw, 2010 (in Polish).
  • [2] A. Bishko, A.A. Samokrutov, V.G. Shevaldykin, Ultrasonic echo-pulse tomography of concrete using shear waves low-frequency phased antenna arrays, 17th World Conference on Nondestructive Testing, Shanghai, China, 2008.
  • [3] P. Berkowski, G. Dmochowski, J. Grosel, K. Schabowicz, Z. Wójcicki, Analysis of failure conditions for a dynamically loaded composite floor system of an industrial building, Journal of Civil Engineering and Management 19 (2) (2013) 529–541.
  • [4] R. Beutel, H. Reinhardt, C. Grosse, A. Glaubitt, M. Krause, C. Maierhofer, D. Algernon, H. Wiggenhauser, M. Schickert, Comparative performance tests and validation of NDT methods for concrete testing, Journal of Nondestructive Evaluation 27 (1–3) (2008) 59–65.
  • [5] L. Brunarski, Testing of materials, members and structures, Nondestructive test methods, vol. VIII, Arkady, Warsaw, 1970 (in Polish).
  • [6] A. Davis, The non-destructive impulse response test in North America: 1985-2001, NDT&E International 36 (4) (2003) 185–193.
  • [7] N. Delatte, D. Fowler, B. McCullough, Full-scale test of high early strength bonded concrete overlay design and construction methods, Transportation Research Board of the National Academies 1544 (1996) 9–16.
  • [8] J. Deputat, Nondestructive methods of testing material properties (in Polish), Gamma, 1997.
  • [9] Ł. Drobiec, R. Jasiński, A. Piekarczyk, Diagnosis of reinforced concrete structures, Methodology, Field and laboratory testing of concrete and steel, vol. 1, Wydawnictwo Naukowe PWN, Warsaw, 2010 (in Polish).
  • [10] A. Garbacz, Non-destructive investigations of polymer- concrete composites with stress waves – repair efficiency evaluation, Oficyna Wydawnicza Politechniki Warszawskiej, prace Naukowe Budownictwo z 147 (2007).
  • [11] T. Gorzelańczyk, J. Hoła, Ł. Sadowski, K. Schabowicz, Methodology of nondestructive identification of defective concrete zones in unilaterally accessible massive members, Journal of Civil Engineering and Management 19 (6) (2013) 775–786.
  • [12] B. Goszczyńska, G. Świt, W. Trąmpczyński, A. Krampikowska, J. Tworzewska, P. Tworzewski, Experimental validation of concrete crack identification and location with acoustic emission method, Archives of Civil and Mechanical Engineering 12 (1) (2012) 23–28.
  • [13] B. Hertlein, A. Davis, Locating Concrete Consolidation Problems using the Nondestructive Impulse Response Test, American Concrete Institute Fall Convention, Los Angeles, 1998.
  • [14] J. Hoła, K. Schabowicz, Methodology of neural identification of strength of concrete, ACI Materials Journal 102 (6) (2005) 459–464.
  • [15] J. Hoła, K. Schabowicz, B. Stawiski, Atypical applications of ultrasonic method in testing of concrete structures, in: 9th European Conference on Nondestructive Testing, ECNDT Berlin, 2006.
  • [16] J. Hoła, K. Schabowicz, State-of-the-art non-destructive methods for diagnostic testing of building structures – anticipated development trends, Archives of Civil and Mechanical Engineering X (3) (2010) 5–18.
  • [17] J. Hoła, Ł. Sadowski, K. Schabowicz, Nondestructive identification of delaminations in concrete floor toppings with acoustic methods, Automation in Construction 20 (2011) 799–807.
  • [18] J. Kaszyński, Ultrasonic testing of concrete, taking into account reinforcement and cracking zones (in Polish), Szczecin Polytechnic, Scientific Papers, 2003.
  • [19] J.H. Kurz, M. Stoppel, A. Taffe, Ch. Boller, Condition assessment of reinforced concrete structures using automated multi-sensor systems, in: 18th World Conference on Nondestructive Testing, Durban, South Africa, 2012.
  • [20] V.N. Kozlov, A.A. Samokrutov, V.G. Shevaldykin, Thickness measurements and flaw detection in concrete using ultrasonic echo method, Journal of Nondestructive Testing and Evaluation 13 (1997) 73–84.
  • [21] A. Łowińska-Kluge, T. Błaszczyński, The influence of internal corrosion on the durability of concrete, Archives of Civil and Mechanical Engineering 12 (2) (2012) 219–227.
  • [22] I. Malecki, J. Ranachowski, Acoustic emission – Sources, Methods, Applications, Wydawnictwo PASCAL, Warsaw, 1994 (in Polish).
  • [23] S. Oh, B. Suh, M. Noh, S. Han, K. Kim, E. Cho, et al., Non-destructive test for the assessment of concrete structure safety applied to full-scale test model, American Geophysical Union, Fall Meeting 12 (2009).
  • [24] N. Ottosen, M. Ristinmmaa, A. Davis, Theoretical interpretation of impulse response tests of embedded concrete structures, Journal of Engineering Mechanics 130 (9) (2004) 1062–1071.
  • [25] M. Ožbolt, T. Rukavina, J. Domitrović, Comparison of the Pavement Layers Thickness Measured by Georadar and Conventional Methods – Examples from Croatia, The Baltic Journal of Road and Bridge Engineering 7 (1) (2012) 30–35.
  • [26] M. Rucka, K. Wilde, Non-destructive diagnostics of concrete cantilever beam and slab by impact echo method, Diagnostyka 3 (55) (2010) 63–68.
  • [27] L. Runkiewicz, Tests of Reinforced Concrete Structures, Gamma, 2002 (in Polish).
  • [28] A.A. Samokrutov, V.G. Shevaldykin, Ultrasonic tomography of metal structure using the digital focused antenna array methods, Russian Journal of Nondestructive Testing 47 (2011) 16–29.
  • [29] M. Sansalone, W. Strett, Impact-echo: Nondestructive Evaluation of Concrete and Masonry, Bullbrier Press, Ithaca, 1997.
  • [30] K. Schabowicz, J. Hoła, D. Styś, Nondestructive elastic-wave tests of concrete in foundation slab, in: 10th European Conference on Nondestructive Testing, Moscow, Russia, 2010.
  • [31] K. Schabowicz, J. Hoła, Nondestructive elastic-wave tests of foundation slab in office building, Materials Transactions Vol. 53 (2012) 296–302.
  • [32] K. Schabowicz, Methodology for non-destructive identification of thickness of unilaterally accessible concrete elements by means of state-of-the-art acoustic techniques, Journal of Civil Engineering and Management 19 (3) (2013) 325–334.
  • [33] K. Schabowicz, Ultrasonic tomography – the latest nondestructive technique for testing concrete members – description, test methodology, application example, Archives of Civil and Mechanical Engineering 14 (2) (2014) 295–303.
  • [34] K. Schabowicz, V. Suvorov, Nondestructive testing and constructing profiles of back walls by means of ultrasonic tomography, Russian Journal of Nondestructive Testing 50 (2) (2014).
  • [35] V.G. Shevaldykin, A.A. Samokrutov, V.N. Kozlov, Ultrasonic low-frequency short-pulse transducers with dry point contact. development and application, in: DGZfP (Ed.), International Symposium Non-Destructive Testing in Civil Engineering (NDT-CE), Proceedings on BB 85-CD, V66, Berlin, Germany, 2003.
  • [36] B. Stawiski, The heterogeneity of mechanical properties of concrete in formed constructions horizontally, Archives of Civil and Mechanical Engineering 12 (1) (2012) 90–94.
  • [37] G. Świt, Predicting Failure Processes for Bridge – Type Structures Made of Prestressed Concrete Beams Using the Acoustic Emission Method, Politechnika Świetokrzyska, Monografie, Studia, rozprawy nr M21, 2011.
  • [38] A. Taffe, H. Wiggenhauser, Validation for thickness measurement in civil engineering with ultrasonic echo, in: 9th European Conference on Nondestructive Testing, Berlin, Germany, 2006.
  • [39] A. Quiviger, J. Zardan, C. Payan, J. Chaix, V. Garnier, J. Moysan, J. Jean Salin, Macro crack characterization by linear and nonlinear ultrasound in concrete, Proceedings of Meetings on Acoustics 10 (2010).
  • [40] J. Zwolski, J. Bień, Modal analysis of bridge structures by means of forced vibration tests, Journal of Civil Engineering and Management 17 (4) (2011) 590–599.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d54ce4b3-2003-457c-b3c6-520569c72dad
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