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Test method for de-icing salt-frost scaling in high-performance concrete.


ABSTRACT: This paper describes a de-icing salt-frost scaling test method for analysis of the salt-frost scaling behaviour in high-performance concrete with various binders. The method was therefore designed to result in considerable scaling damage for the concrete considered to be salt-frost resistant. In addition, the experimental set-up was designed to avoid leakage, and to allow testing of a large number of samples. The method was validated by testing concrete with three different binders with a water-binder ratio of 0.40 with 5% air content. Various preconditioning procedures and freeze-thaw cycles were evaluated. The results show that the freeze-thaw cycle chosen results in a large mass of scaling and the salt-frost scaling behaviour agreed with the findings of previous studies. Thus, the method was considered suitable to study the salt-frost scaling behaviour in high-performance concrete. Three distinguishing features of the method are the following: •The freeze-thaw cycle result in a large mass of salt-frost scaling to enable study of high-performance concrete.•The concrete sample is above the salt solution to prevent leakage. The test surface is submerged 2?mm into the salt solution inside a cup.•Freezers with air as the thermal medium are used to allow a large number of samples.

SUBMITTER: Strand MJ 

PROVIDER: S-EPMC6199811 | biostudies-other | 2018

REPOSITORIES: biostudies-other

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Test method for de-icing salt-frost scaling in high-performance concrete.

Strand Martin J MJ   Fridh Katja K  

MethodsX 20181009


This paper describes a de-icing salt-frost scaling test method for analysis of the salt-frost scaling behaviour in high-performance concrete with various binders. The method was therefore designed to result in considerable scaling damage for the concrete considered to be salt-frost resistant. In addition, the experimental set-up was designed to avoid leakage, and to allow testing of a large number of samples. The method was validated by testing concrete with three different binders with a water-  ...[more]

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