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- W2999927381 abstract "Abstract The objective of this paper was to study the effect of hydrodynamic impact on durability and healing performance of inductive asphalt concrete (IAC) through moisture induced sensitivity test (MIST). AC-13 inductive asphalt concrete containing steel fiber was designed and Marshall specimens were prepared to suffer MIST in orthogonal condition. After MIST, cutting was performed to observe the corrosion of steel fibers inside while semi-circular bending (SCB) test was conducted to evaluate the mechanical properties. Then fracture-healing procedure was carried out to investigate the strength recovery ratios of the specimens before and after MIST. Meanwhile, the crack healing ratio and change of air voids inside asphalt concrete were observed by computed tomography (CT) scan test. The results showed that there was no corrosion of steel fibers inside samples after short term simulation in the laboratory. The tensile strength and fracture energy decreased after MIST. The changing trends of strength recovery ratio and fracture energy recovery ratio were consistent with that of tensile strength. CT-scan indicated that the healing ratio of crack was up to 92.3%. The initial air void content of asphalt concrete was 4.7%, 5.7% after adding steel fibers, and 4.87% after induction heating. However, the air void changed from 5.7% to 6.8% after MIST. Orthogonal test factor analysis showed that temperature was the most significant factor affecting the durability of asphalt concrete during MIST." @default.
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- W2999927381 date "2020-04-01" @default.
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- W2999927381 title "Effect of moisture conditioning on mechanical and healing properties of inductive asphalt concrete" @default.
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- W2999927381 doi "https://doi.org/10.1016/j.conbuildmat.2020.118139" @default.
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