Factors influencing the performance of rebound hammer used for non-destructive testing of concrete members: A review
Tài liệu tham khảo
Hertz, 1881, About the contact of elastic solid bodies, Journal für die reine und angewandte Mathematik., 5, 12
Szymański, 1989, 330
Brinell, 1901, Steel ball test report, matériaux de construction, 2, 83
Crepps, 1923, 32
Skramtajew, 1938, Determining concrete strength in control for concrete in structures, J. Am. Concrete Inst., 9, 285
Gaede, 1934, 35, 356
Schmidt, 1950, Rebound hammer for concrete testing, Schweizerische Bauzeitung, 15, 378
Greene, 1954, Test hammer provides new method of evaluating hardened concrete, J. Am. Concrete Inst., 26, 249
Anderson, 1955, Test hammer provides new method of evaluating hardened concrete, J. Am. Concrete Inst., 27, 256-1
Szilágyi, 2009, 50 years of experience with the Schmidt rebound hammer, Int. J. Concr. Struct. Mater., 10, 46
Proceq, 2008
Leeb, 1986, Definition of the hardness value L in the Equotip dynamic measurement method, VDI Berichte, 583, 109
Proceq, 2017
Proceq, 2008
Akashi, 1984, Study of the stress waves in the plunger of a rebound hammer at the time of impact, 17
ACI, 2003
Yang, 2018, Characterization of surface hardness and microstructure of high performance concrete, J. Wuhan Univ. Technol. Sci. Ed., 33, 124, 10.1007/s11595-018-1796-x
Kim, 2009, Effect of carbonation on the rebound number and compressive strength of concrete, Cem. Concr. Compos., 31, 139, 10.1016/j.cemconcomp.2008.10.001
IAEA, 2002
JGJ, 2001
Szilágyi, 2011, Rebound surface hardness of concrete: introduction of an empirical constitutive model, Constr. Build. Mater., 25, 2480, 10.1016/j.conbuildmat.2010.11.070
Nobile, 2015, Prediction of concrete compressive strength by combined non-destructive methods, Meccanica, 50, 411, 10.1007/s11012-014-9881-5
Mehta, 2005
Malhotra, 2004
Monteiro, 2007, Assessment of characteristic compressive strength in structures by the rebound hammer test according to EN 13791, 2009
Mindess, 1981
Neville, 2001, 59
Szilágyi, 2014, Extensive statistical analysis of the variability of concrete rebound hardness based on a large database of 60 years’ experience, Constr. Build. Mater., 53, 333, 10.1016/j.conbuildmat.2013.11.113
Olomo, 2012, Assessment of the material properties of a fire-damaged building, Construction, 13, 16
Bodnarova, 2013, Effect of high temperatures on cement composite materials in concrete structures, Acta Geodyn. Geomater., 10, 173, 10.13168/AGG.2013.0017
Kodur, 2014
Brozovsky, 2016, Contribution to the issue of evaluating the compressive strength of concrete exposed to high temperatures using the Schmidt rebound hammer, Russ. J. Nondestruct. Test., 52, 44, 10.1134/S1061830916010046
Breysse, 2012, Nondestructive evaluation of concrete strength: an historical review and a new perspective by combining NDT methods, Constr. Build. Mater., 33, 139, 10.1016/j.conbuildmat.2011.12.103
Alwash, 2017, Factors affecting the reliability of assessing the concrete strength by rebound hammer and cores, Constr. Build. Mater., 140, 354, 10.1016/j.conbuildmat.2017.02.129
AIJ, 1983
ASTM C805–97, 1997
BIS 13311-13312, 2008
BS 1881 - Part 202, 1986
EN 12504-2, 2001
EN 13791, 2007
FHWA, 1997
Proceq, 2003
Kheder, 1999, A two stage procedure for assessment of in situ concrete strength using combined non-destructive testing, Mater. Struct., 32, 410, 10.1007/BF02482712
Balkrishna, 2017, Interpretation of concrete mix designs by surface hardness method, Malaysian J. Civil Eng., 29, 227
Szilágyi, 2015, Understanding the rebound surface hardness of concrete, J. Civ. Eng. Manag., 21, 185, 10.3846/13923730.2013.802722
Qasrawi, 2000, Concrete strength by combined nondestructive methods simply and reliably predicted, Cem. Concr. Res., 30, 739, 10.1016/S0008-8846(00)00226-X
Hobbs, 2007, Non-destructive testing techniques for the forensic engineering investigation of reinforced concrete buildings, Forensic Sci. Int., 167, 167, 10.1016/j.forsciint.2006.06.065
Pascale, 2003, Nondestructive assessment of the actual compressive strength of high-strength concrete, ASCE J. Mater. Civil Eng., 15, 452, 10.1061/(ASCE)0899-1561(2003)15:5(452)
Brozovsky, 2014, High-strength concrete-NDT with rebound hammer: influence of aggregate on test results, Nondestruct. Test. Eval., 29, 255, 10.1080/10589759.2014.926897
Di Leo, 1984, Core sampling size in nondestructive testing of concrete structures, Am. Concr. Inst., 82, 459
Antonio, 2013, Calibration and reliability of the rebound (Schmidt) hammer test, Civ. Eng. Archit., 1, 66, 10.13189/cea.2013.010303
Goncalves, 1995, 977
Aydin, 2010, Correlation between Schmidt hammer and destructive compressions testing for concretes in existing buildings, Sci. Res. Essays, 5, 1644
Zabihi, 2012
Szymanowski, 2020, Functional and adhesive properties of cement-based overlays modified with amorphous silica nanospheres, J. Adhes., 96, 1, 10.1080/00218464.2019.1663412
Lima, 2000, Correlation between the compressive strength and surface hardness of concrete, 429
Soshiroda, 2006, Early-stage inspection of concrete quality in structures by combined nondestructive method, Mater. Struct., 39, 149, 10.1617/s11527-005-9007-6
Duna, 2014, Correlation between non-destructive testing (NDT) and destructive testing (DT) of compressive strength of concrete, Int. J. Eng. Sci. Invent., 3, 12
Aguwamba, 2012, A comparative analysis of the rebound hammer and ultrasonic pulse velocity in testing concrete, Niger. J. Technol., 31, 31
Mikulic, 1992, Determination of concrete quality in a structure by combination of destructive and non-destructive methods, Mater. Struct., 25, 65, 10.1007/BF02472458
Nash’t, 2005, Finding a unified relationship between crushing strength of concrete and non-destructive tests
Kumavat, 2020
Abdulkadir, 2017, Destructive and nondestructive strength evaluation of concrete exposed to fire, J. Zankoy Sulaimani, Part-A- (Pure Appl. Sci.), 19, 43, 10.17656/jzs.10631
Kolek, 1958, An Appreciation of the Schmidt rebound hammer, Mag. Concr. Res., 10, 27, 10.1680/macr.1958.10.28.27
Shariati, 2011, Assessing the strength of reinforced concrete structures through ultrasonic pulse velocity and Schmidt rebound hammer tests, Sci. Res. Essays, 6, 213
Hajjeh, 2012, Correlation between destructive and non-destructive strengths of concrete cubes using regression analysis, Contemp. Eng. Sci., 5, 493
Pascale, 2000, Evaluation of actual compressive strength of high strength concrete by NDT
Pattamad, 2018, Rebound hammer test to estimate compressive strength of heat exposed concrete, Constr. Build. Mater., 172, 387
Kovler, 2018, Testing of concrete by rebound method: leeb versus Schmidt hammers, Mater. Struct., 51, 138, 10.1617/s11527-018-1265-1
Pereira, 2018, Assessing concrete strength variability in existing structures based on the results of NDTs, Constr. Build. Mater., 173, 786, 10.1016/j.conbuildmat.2018.04.055
Rashid, 2017, Compressive strength evaluation by non-destructive techniques: an automated approach in construction industry, J. Build. Eng., 12, 147, 10.1016/j.jobe.2017.05.010
Aseem, 2019, Structural health assessment of fire damaged building using non-destructive testing and micro-graphical forensic analysis: a case study, Case Stud. Constr. Mater., 11, e00258
Kazemi, 2019, Compressive strength assessment of recycled aggregate concrete using Schmidt rebound hammer and core testing, Constr. Build. Mater., 224, 630, 10.1016/j.conbuildmat.2019.07.110
Breysse, 2019, Recommendation of RILEM TC249-ISC on Nondestructive in situ strength assessment of concrete, Mater. Struct., 52
Nepomuceno, 2019, Evaluation of self-compacting concrete strength with non-destructive tests for concrete structures, Appl. Sci., 9, 5109, 10.3390/app9235109