This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with lower-frequency swept pump waves, for providing an efficient global detection of small cracks in cementitious materials. By simultaneously comparing, forboth uncracked and cracked mortars, the ultrasonic velocity variations and decorrelation coefficients between the unperturbed and perturbed signals with pump amplitude, this method makes it possible to accurately detect cracks with widths of around 20 μm in correlation with velocity variations of approximately 0.01%. The potential influence of certain material parameters such as microscopic damage is also discussed
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
An ultrasonic method, based on nonlinear acoustic mixing of coda waves by lower-frequency swept pump...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
This paper presents an ultrasonic method, based on the nonlinear acoustic mixing of coda waves with ...
An ultrasonic method, based on nonlinear acoustic mixing of coda waves by lower-frequency swept pump...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...