Micro–macro fracture relationships and acoustic emissions in concrete
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Bazant ZP, Planas J. Fracture mechanics and size effect in concrete and other quasibrittle materials. New York: CRC Press, 1998.
Karihaloo BL. Fracture mechanics and structural concrete. New York: Longman Scientific and Technical, 1995.
van Mier JGM. Fracture processes of concrete. New York: CRC Press, 1997.
Shah SP, Swartz SE, Ouyang C. Fracture mechanics of concrete: applications of fracture mechanics to concrete, rock, and other quasi-brittle materials. New York: John Wiley, 1995.
Ohtsu, 1996, The history and development of acoustic emission in concrete engineering, Mag Concr Res, 48, 321, 10.1680/macr.1996.48.177.321
Maji, 1988, Process zone and acoustic emissions in concrete, Exp Mech, 28, 27, 10.1007/BF02328992
Nomura N, Mihashi H, Izumi M. Properties of fracture process zone and tension softening behaviour of concrete. In: van Mier JGM, Rots JG, Bakker A, editors. Fracture processes in concrete, rock, and ceramics. London: Chapman and Hall, 1991:51–60.
Berthaud Y, Ringot E, Schmitt N. Experimental measurements of localization for tensile tests on concrete. In: van Mier JGM, Rots JG, Bakker A, editors. Fracture processes in concrete, rock, and ceramics. London: Chapman and Hall, 1991:41–50.
Li, 1994, Microcracking in concrete under uniaxial tension, ACI Mater J, 91, 372
Ohtsu, 1987, Mathematical theory of acoustic emission and its application, Mem Fac Eng, Kumamoto Uni, 32, 1
Suaris, 1995, Acoustic emission source characterization in concrete under biaxial loading, Mater Struct, 28, 444, 10.1007/BF02473163
Ohtsu, 1998, Moment tensor analysis of acoustic emission for cracking mechanisms in concrete, ACI Struct J, 95, 87
Hsu, 1977, An approach to acoustic emission signal analysis, Mater Eval, 35, 100
Aki K, Richards PG. Quantitative seismology: theory and methods. New York: W.H. Freeman and Company, 1980.
Enoki, 1988, Theory and analysis of deformation moment tensor due to microcracking, Int J Fract, 38, 295, 10.1007/BF00019805
Scruby, 1985, Characterisation of fatigue crack extension by quantitative acoustic emission, Int J Fract, 28, 201, 10.1007/BF00035216
Ohtsu, 1988, AE source location and orientation of tensile cracks from surface observation, NDT Int, 21, 143, 10.1016/0308-9126(88)90445-2
Landis, 1993, Recovery of microcrack parameters in mortar using quantitative acoustic emission, J Nondest Eval, 12, 219, 10.1007/BF00568107
Landis, 1995, Frequency-dependent stress wave attenuation in cement-based materials, J Eng Mech, 121, 737, 10.1061/(ASCE)0733-9399(1995)121:6(737)
Landis EN. A quantitative acoustic emission investigation of microfracture in cement-based materials. Department of Civil Engineering. Evanston, Illinois: Northwestern University, 1993.
Ohtsu, 1989, AE application to fracture mechanics, JCI Trans, 11, 673
Landis, 1992, Automated determination of first P-wave arrival and acoustic emission source location, J Acoust Emission (JACEDO), 10, S97
Slate FO, Hover KC. Microcracking in concrete. In: Carpinteri A, Ingraffea AR, editors. Fracture mechanics of concrete: material characterization and testing. The Hague: Martinus Nijhoff Publishers, 1984:137–160.
RILEM Committee on Fracture Mechanics of Concrete. Mater Struct 1991;23:457–460.
Jenq, 1985, A fracture toughness criterion for concrete, Eng Fract Mech, 21, 1055, 10.1016/0013-7944(85)90009-8