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Article

The Dynamic Mechanical Properties of High Strength and High Ductility Concrete Under a Corrosion Environment

1
College of Civil Engineering, Zhejiang University of Technology, Hangzhou 310014, China
2
Key Laboratory of Civil Engineering Structures & Disaster Prevention and Mitigation Technology of Zhejiang Province, Zhejiang University of Technology, Hangzhou 310023, China
3
Zhejiang Fang Yuan New Materials Co., Ltd., Taizhou 318000, China
4
College of Civil Engineering and Architecture, Zhejiang University of Science and Technology, Hangzhou 310023, China
*
Authors to whom correspondence should be addressed.
Buildings 2025, 15(17), 2983; https://doi.org/10.3390/buildings15172983
Submission received: 24 June 2025 / Revised: 3 August 2025 / Accepted: 19 August 2025 / Published: 22 August 2025
(This article belongs to the Special Issue Properties and Applications of Sustainable Construction Materials)

Abstract

High strength and high ductility concrete (HSHDC) exhibit exceptional compressive strength (up to 90 MPa) and remarkable tensile ductility (ultimate tensile strain reaching 6%), making them highly resilient under impact loading. To elucidate the influence of strain rate and wet–dry cycling of salt spray on the dynamic compressive response of HSHDC, a series of tests was conducted using a 75 mm split Hopkinson pressure bar (SHPB) system on specimens exposed to cyclic corrosion for periods ranging from 0 to 180 days. The alternating seasonal corrosion environment was reproduced by using a programmable walk-in environmental chamber. Subsequently, both uniaxial compression and SHPB tests were employed to evaluate the post-corrosion dynamic compressive properties of HSHDC. Experimental findings reveal that corrosive exposure significantly alters both the static and dynamic compressive mechanical behavior and constitutive characteristics of HSHDC, warranting careful consideration in long-term structural integrity assessments. As corrosion duration increases, the quasi-static and dynamic compressive strengths of HSHDC exhibit an initial enhancement followed by a gradual decline, with stress reaching its peak at 120 days of corrosion under all strain rates. All specimens demonstrated pronounced strain-rate sensitivity, with the dynamic increase factor (DIF) being minimally influenced by the extent of corrosion under dynamic strain rates (112.6–272.0 s−1). Furthermore, the peak energy-consumption capacity of HSHDC was modulated by both the duration of corrosion and the applied strain rate.
Keywords: high strength and high ductility concrete; wet–dry cycles of salt spray; mechanical properties; strain rate high strength and high ductility concrete; wet–dry cycles of salt spray; mechanical properties; strain rate

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MDPI and ACS Style

Yang, J.; Han, S.; Cao, Q.; Zhao, X.; Yu, X.; Liu, J. The Dynamic Mechanical Properties of High Strength and High Ductility Concrete Under a Corrosion Environment. Buildings 2025, 15, 2983. https://doi.org/10.3390/buildings15172983

AMA Style

Yang J, Han S, Cao Q, Zhao X, Yu X, Liu J. The Dynamic Mechanical Properties of High Strength and High Ductility Concrete Under a Corrosion Environment. Buildings. 2025; 15(17):2983. https://doi.org/10.3390/buildings15172983

Chicago/Turabian Style

Yang, Jie, Sijie Han, Qixin Cao, Xin Zhao, Xinyang Yu, and Jintao Liu. 2025. "The Dynamic Mechanical Properties of High Strength and High Ductility Concrete Under a Corrosion Environment" Buildings 15, no. 17: 2983. https://doi.org/10.3390/buildings15172983

APA Style

Yang, J., Han, S., Cao, Q., Zhao, X., Yu, X., & Liu, J. (2025). The Dynamic Mechanical Properties of High Strength and High Ductility Concrete Under a Corrosion Environment. Buildings, 15(17), 2983. https://doi.org/10.3390/buildings15172983

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