Abstract

The durability of the concrete structure under the coupling effect of underwater corrosion particles has always been one of the hot issues at home and abroad. Aiming at the damage problem of the underground concrete structure in a marine and offshore chloride corrosion environment, based on the pile foundation engineering of the Coastal Industrial Park, the corrosion resistance test of pile foundation concrete is carried out. By preparing 7 kinds of pile foundation concrete samples with different mix proportions, the mechanical properties of concrete with different ages were analyzed under the coupling environment of groundwater. The chloride penetration resistance of concrete was analyzed by the RCM method, and the sulfate corrosion resistance was analyzed by the 17D accelerated simulation test. The test results show that with the decrease of the water-cement ratio and the increase of the cementitious material, the concrete damage is less and the durability is improved. It is suggested that the water-cement ratio of 0.34 and the cementitious material of 480 kg/m3 be selected for the preparation of the pile foundation concrete; when the content of fly ash is 15%, the antisulfuric acid corrosion ability of the concrete cementitious system can be enhanced and the concrete with 40% mineral powder has strong antichloride ion corrosion ability; the results show that the chloride diffusion coefficient of concrete samples with seven mix proportions is less than 6 ∗ 10–12 m2/s, which can meet the durability design requirements and reduce the damage of concrete. The sulfate corrosion resistance of concrete samples with high-efficiency additives is the best.

Highlights

  • The loss caused by corrosion accounts for 3%~5% of GDP in China every year, and the direct loss caused by marine corrosion is up to 1 trillion yuan

  • The results show that SO42− and Cl− are adsorbed on the surface of reinforced concrete through the protective layer of concrete to destroy the passive film and cause corrosion of reinforced concrete

  • Based on the theoretical mix proportion of the cast-in-place pile, in order to study the influence of different concrete raw material ratios on the durability of the pile foundation, 7 groups of concrete samples were prepared according to different water-cement ratios, rubber material

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Summary

Introduction

The loss caused by corrosion accounts for 3%~5% of GDP in China every year, and the direct loss caused by marine corrosion is up to 1 trillion yuan. Through the preparation of different proportions of concrete, the effects of the water-cement ratio, cementitious materials, mineral powder, fly ash, preservatives, rust inhibitor, common- and high-efficiency preservatives on the mechanical properties, chloride ion permeability resistance, and sulfate resistance of marine pile foundation concrete are discussed and the optimal mix proportion of pile foundation corrosion-resistant concrete suitable for the project is proposed. It lays a foundation for the durability design of castin-place piles in corrosive sites, and the research results can provide reference for the design of pile foundation engineering in similar sites

Theoretical Calculation Model
Test Overview
Fly Ash
Test Method
Analysis of Test Results
Conclusion
Full Text
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