Chloride Transport in OPC Concrete Subjected to the Freeze and Thaw Damage

Joint Authors

Ann, Ki Yong
Kim, Min Jae
Hwang, Jun Pil
Kim, Ki Hwan
Cho, Chang-Geun

Source

Advances in Materials Science and Engineering

Issue

Vol. 2017, Issue 2017 (31 Dec. 2017), pp.1-7, 7 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2017-02-16

Country of Publication

Egypt

No. of Pages

7

Abstract EN

To predict the durability of a concrete structure under the coupling degradation consisting of the frosting and chloride attack, microstructural analysis of the concrete pore structure should be accompanied.

In this study, the correlation between the pore structure and chloride migration for OPC concrete was evaluated at the different cement content in the concrete mix accounting for 300, 350, and 400 kg/m3 at 0.45 of a free water cement ratio.

The influence of frosting damage on the rate of chloride transport was assessed by testing with concrete specimens subjected to a rapid freezing and thawing cyclic environment.

As a result, it was found that chloride transport was accelerated by frost damage, which was more influential at the lower cement content.

The microscopic examination of the pore structure showed that the freezing environment increased the volume of the large capillary pore in the concrete matrix.

American Psychological Association (APA)

Ann, Ki Yong& Kim, Min Jae& Hwang, Jun Pil& Cho, Chang-Geun& Kim, Ki Hwan. 2017. Chloride Transport in OPC Concrete Subjected to the Freeze and Thaw Damage. Advances in Materials Science and Engineering،Vol. 2017, no. 2017, pp.1-7.
https://search.emarefa.net/detail/BIM-1124825

Modern Language Association (MLA)

Ann, Ki Yong…[et al.]. Chloride Transport in OPC Concrete Subjected to the Freeze and Thaw Damage. Advances in Materials Science and Engineering No. 2017 (2017), pp.1-7.
https://search.emarefa.net/detail/BIM-1124825

American Medical Association (AMA)

Ann, Ki Yong& Kim, Min Jae& Hwang, Jun Pil& Cho, Chang-Geun& Kim, Ki Hwan. Chloride Transport in OPC Concrete Subjected to the Freeze and Thaw Damage. Advances in Materials Science and Engineering. 2017. Vol. 2017, no. 2017, pp.1-7.
https://search.emarefa.net/detail/BIM-1124825

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1124825