Seawater Concrete Degradation

Seawater concrete degradation is the progressive loss of strength, integrity, and service life that occurs when concrete structures are exposed to marine environments. Seawater transports chloride and sulfate ions into concrete pores; chlorides can depassivate embedded steel and initiate corrosion, while sulfates react with cement hydration products, causing expansion, cracking, and surface deterioration. Wetting and drying cycles, abrasion, and freeze-thaw conditions can intensify these processes. Understanding seawater concrete degradation helps engineers select durable mixtures, reduce permeability, protect reinforcement, and design maintenance plans for bridges, piers, ports, offshore foundations, and other coastal infrastructure.

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Source: Roberto Leon, Department of Civil and Environmental Engineering, Virginia Tech, Blacksburg, VA In a previous laboratory focused on concrete in compression, we observed that concrete can withstand very large stresses under uniaxial compressive forces. However, the failures observed were not compressive failures but failures along shear planes where maximum tensile forces occur. Thus, it is important to understand the behavior of concrete in tension and particularly its maximum strength...

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