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Application of micromechanics to the characterization of mortar by ultrasound

M.G. Hernández, J.J. Anaya, M.A.G. Izquierdo, and L.G. Ullate
Ultrasonics Vol. 40 No 1-8, pp. 217-221
http://dx.doi.org/10.1016/S0041-624X(02)00140-3

Mechanical properties of concrete and mortar structures can be estimated by ultrasonic non-destructive testing. When the ultrasonic velocity is known, there are standardized methods based on considering the concrete a homogeneous material. Cement composites, however, are heterogeneous and porous, and have a negative effect on the mechanical properties of structures.

This work studies the impact of porosity on mechanical properties by considering concrete a multiphase material. A micromechanical model is applied in which the material is considered to consist of two phases: a solid matrix and pores. From this method, a set of expressions is obtained that relates the acoustic velocity and Young's modulus of mortar. Experimental work is based on non-destructive and destructive procedures over mortar samples whose porosity is varied. A comparison is drawn between micromechanical and standard methods, showing positive results for the method here proposed.

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