Computers and Concrete
Volume 20, Number 4, 2017, pages 503-509
DOI: 10.12989/cac.2017.20.4.503
Depth-dependent evaluation of residual material properties of fire-damaged concrete
Gyu-Jin Kim and Hyo-Gyoung Kwak
Abstract
In this study, fire-damaged concrete was investigated by a nonlinear resonance vibration (NRV) technique, in order to evaluate its residual material properties. For the experiments, five cubic concrete specimens were prepared and four of them were damaged at different temperatures using a furnace. With a thermal insulator wrapped at the sides of specimen, thermal gradation was applied to the samples. According to the peak temperatures and depths of the samples, nonlinearity parameters were calculated with the NRV technique before the tendency of the parameters was evaluated. In addition, compressive strength and dynamic elastic modulus were measured for each sample and a comparison with the nonlinearity parameter was carried out. Through the experimental results, the possibility of the NRV technique as a method for evaluating residual material properties was evaluated.
Key Words
fire-damaged concrete; nonlinear resonance vibration (NRV); thermal gradation; residual material property; compressive strength; dynamic elastic modulus
Address
Gyu-Jin Kim and Hyo-Gyoung Kwak: Department of Civil and Environmental Engineering, Korean Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea