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Article: Theoretical and experimental investigation of loading effects on chloride diffusion in saturated concrete

TitleTheoretical and experimental investigation of loading effects on chloride diffusion in saturated concrete
Authors
Issue Date2015
Citation
Journal of Advanced Concrete Technology, 2015, v. 13, n. 1, p. 30-43 How to Cite?
AbstractCopyright © 2015 Japan Concrete Institute. In this paper, a comprehensive investigation regarding the loading effects on chloride diffusion in saturated concrete is reported. It involves both theoretical and experimental aspects, towards contributing to the service-life prediction of infrastructure under chloride attack. A revised chloride diffusion model is proposed based on the modified Fick's second law with an emphasis on the loading effects. In particular, this influence is quantified using a newly-introduced damage effect factor defined by tortuosity and constrictivity of damaged concrete. This model is capable of predicting the chloride profiles in concrete under different loading states, regardless of whether it is damaged or undamaged. Meanwhile, a series of experimental studies were extensively operated in order to analyze the influence of loading on chloride diffusion process. Two types of mixtures (i.e. ordinary concrete and ordinary concrete mixed with slag) were investigated for chloride diffusion tests under different natures (i.e. compressive and tensile loads) and magnitudes of loads. Totally four levels of loads were applied to further correlate the relation between chloride diffusivities and associated strain values. Finally, two groups of test data with different tensile strain were adopted to validate the theoretical model. It shows that the model is reasonable and the numerical result is adequately accurate.
Persistent Identifierhttp://hdl.handle.net/10722/251672
ISSN
2021 Impact Factor: 2.459
2020 SCImago Journal Rankings: 0.693
ISI Accession Number ID

 

DC FieldValueLanguage
dc.contributor.authorFu, Chuanqing-
dc.contributor.authorJin, Xianyu-
dc.contributor.authorYe, Hailong-
dc.contributor.authorJin, Nanguo-
dc.date.accessioned2018-03-08T05:00:38Z-
dc.date.available2018-03-08T05:00:38Z-
dc.date.issued2015-
dc.identifier.citationJournal of Advanced Concrete Technology, 2015, v. 13, n. 1, p. 30-43-
dc.identifier.issn1346-8014-
dc.identifier.urihttp://hdl.handle.net/10722/251672-
dc.description.abstractCopyright © 2015 Japan Concrete Institute. In this paper, a comprehensive investigation regarding the loading effects on chloride diffusion in saturated concrete is reported. It involves both theoretical and experimental aspects, towards contributing to the service-life prediction of infrastructure under chloride attack. A revised chloride diffusion model is proposed based on the modified Fick's second law with an emphasis on the loading effects. In particular, this influence is quantified using a newly-introduced damage effect factor defined by tortuosity and constrictivity of damaged concrete. This model is capable of predicting the chloride profiles in concrete under different loading states, regardless of whether it is damaged or undamaged. Meanwhile, a series of experimental studies were extensively operated in order to analyze the influence of loading on chloride diffusion process. Two types of mixtures (i.e. ordinary concrete and ordinary concrete mixed with slag) were investigated for chloride diffusion tests under different natures (i.e. compressive and tensile loads) and magnitudes of loads. Totally four levels of loads were applied to further correlate the relation between chloride diffusivities and associated strain values. Finally, two groups of test data with different tensile strain were adopted to validate the theoretical model. It shows that the model is reasonable and the numerical result is adequately accurate.-
dc.languageeng-
dc.relation.ispartofJournal of Advanced Concrete Technology-
dc.titleTheoretical and experimental investigation of loading effects on chloride diffusion in saturated concrete-
dc.typeArticle-
dc.description.naturelink_to_subscribed_fulltext-
dc.identifier.doi10.3151/jact.13.30-
dc.identifier.scopuseid_2-s2.0-84922469333-
dc.identifier.volume13-
dc.identifier.issue1-
dc.identifier.spage30-
dc.identifier.epage43-
dc.identifier.isiWOS:000352577300003-
dc.identifier.issnl1346-8014-

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