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Kim, Gun
Smart Materials and Intelligent Structures Lab.
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Nondestructive detection of crack density in ultra-high performance concrete using multiple ultrasound measurements: Evidence of microstructural change

Author(s)
Baek, SeungoLee, BadaRhee, Jeong HoonKim, YejinKim, HyoeunHong, Seung KwanZi, GoangseupKim, GunYun, Tae Sup
Issued Date
2024-04
DOI
10.12989/cac.2024.33.4.399
URI
https://scholarworks.unist.ac.kr/handle/201301/82335
Citation
COMPUTERS AND CONCRETE, v.33, no.4, pp.399 - 407
Abstract
This study nondestructively examined the evolution of crack density in ultra-high performance concrete (UHPC) upon cyclic loading. Uniaxial compression was repeatedly applied to the cylindrical specimens at levels corresponding to 32% and 53% of the maximum load-bearing capacity, each at a steady strain rate. At each stage, both P-wave and S-wave velocities were measured in the absence of the applied load. In particular, the continuous monitoring of P-wave velocity from the first loading prior to the second loading allowed real-time observation of the strengthening effect during loading and the recovery effect afterwards. Increasing the number of cycles resulted in the reduction of both elastic wave velocities and Young's modulus, along with a slight rise in Poisson's ratio in both tested cases. The computed crack density showed a monotonically increasing trend with repeated loading, more significant at 53% than at 32% loading. Furthermore, the spatial distribution of the crack density along the height was achieved, validating the directional dependency of microcracking development. This study demonstrated the capability of the crack density to capture the evolution of microcracks in UHPC under cyclic loading condition, as an early-stage damage indicator.
Publisher
사단법인 한국계산역학회
ISSN
1598-8198
Keyword (Author)
crack densitycyclic loadingnondestructive evaluationultra-high performance concretewave velocity

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