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Deterioration of marine concrete exposed to wetting-drying action

Journal

JOURNAL OF CLEANER PRODUCTION
Volume 278, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2020.123383

Keywords

Wetting-drying action; Marine concrete; Deterioration mechanism; Concrete performance

Funding

  1. Novakey Developer Sdn Bhd

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This study reviews the impact of wetting-drying action on concrete deterioration in marine environment and identifies the influential factors. It discusses the physical, mechanical properties, and corrosion resistance of concrete exposed to wetting-drying action. Limited research works are identified on the synergy between physical and chemical deteriorations.
The adverse effects of hostile marine environment on concrete structure have inevitably resulted in huge economic loss and may contribute to catastrophic failure. Concrete is susceptible to weathering, particularly under wetting-drying action (WDA), although its current state of the art is well established. The diverse characteristics of WDA at different site locations have compromised the reliability of labo-ratory works. The objective of this study is to review the impact of WDA on concrete and to provide an overview of the research trend, aiming to identify the research gap. Concrete deterioration mechanisms in marine environment in respect of WDA are identified. The influential factors of WDA are analyzed. The physical and mechanical properties and corrosion resistance of concrete exposed to WDA are discussed. WDA aggravates concrete deterioration by hastening intrusion of inimical compounds such as chloride, sulphate and carbon dioxide. Chloride convection zone can be expanded by two to three times to cause a significant concrete cover loss. Physical damage of concrete starts with efflorescence staining, followed by mortar delamination, aggregate detachment and concrete spalling, leading to loss of mechanical properties. The use of mineral admixtures such as fly ash and silica fume improves concrete resistance against corrosion, but its refining effect may lead to over-accumulation of chloride, risking the long-term durability. Limited research works are identified on synergy between physical and chemical deteriorations, validation of simulated experiment, volume expansion, mass change and tensile strength of concrete. (C) 2020 Elsevier Ltd. All rights reserved.

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