Title :
Ultrasonic testing of reactive powder concrete
Author :
Washer, Glenn ; Fuchs, Paul ; Graybeal, Benjamin A. ; Hartmann, Joseph Lawrence
Author_Institution :
Fairbank Highway Res. Center, McLean, VA, USA
Abstract :
Concrete is a critical material for the construction of infrastructure facilities throughout the world. Traditional concretes consist of cement paste and aggregates ranging in size from 6 to 25 mm that form a heterogeneous material with substantial compressive strength and a very low tensile strength. Steel reinforcement is used to provide tensile strength for reinforced concrete structures and as a composite the material is useful for structural applications. A new material known as reactive powder concrete (RPC) is becoming available. It differs significantly from traditional concrete; RPC has no large aggregates, and contains small steel fibers that provide additional strength and, in some cases, can replace traditional steel reinforcement. Due to its high density and lack of aggregates, ultrasonic inspections at frequencies 10 to 20 times that of traditional concrete inspections are possible. This paper reports on the initial findings of research conducted to determine the applicability of ultrasonic testing techniques for the condition assessment of RPC. Pulse velocities for shear and longitudinal waves and ultrasonic measurement of the modulus of elasticity for RPC are reported. Ultrasonic crack detection for RPC also is investigated.
Keywords :
compressive strength; concrete; crack detection; elastic moduli; elastic waves; particle reinforced composites; powders; tensile strength; ultrasonic applications; ultrasonic materials testing; ultrasonic measurement; 6 to 25 mm; cement paste; composite material; construction material; elastic modulus; heterogeneous material; infrastructure facilities; longitudinal waves; reactive powder concrete; reinforced concrete structures; shear waves; steel reinforcement; substantial compressive strength; tensile strength; ultrasonic crack detection; ultrasonic inspections; ultrasonic measurement; ultrasonic testing; Aggregates; Building materials; Composite materials; Concrete; Frequency; Inspection; Powders; Pulse measurements; Steel; Testing;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2004.1320767