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1-s2.0-S0008884602007469-main
Interaction between loading, freeze–thaw cycles, and chloride salt attack
of concrete with and without steel fiber reinforcement
Ru Mua,*, Changwen Miaoa, Xin Luob, Wei Sunb
aJiangsu Institute of Building Science, No. 12, Beijing Road (w), Nanjing 210008, People’s Republic of China
bDepartment of Materials Science and Engineering, Southeast University, Nanjing 210096, People’s Republic of China
Received 12 April 2001; accepted 15 January 2002
Abstract
In this paper, the deterioration of concrete subjected to the combined action of four-point bending—loading, freeze– thaw cycles, and
chloride salt attack—is discussed. Test results show that concrete tested in chloride salt solution scaled much more severely than in fresh
water, and its weight loss in chloride salt solution was twice that in water. However, dynamic modulus of elasticity (DME) of concrete in
chloride salt solution dropped more slowly than that in water due to supercooling resulting from chloride salt. It is also shown that the
degradation process of concrete simultaneously exposed to loading, freeze– thaw cycles, and chloride salt attack was significantly
accelerated. The higher the stress ratio exerted, the lesser the freeze– thaw cycles that concrete could resist and, consequently, the shorter the
service life. When a relatively high steel fiber content is introduced (1.5 vol.%), the deterioration process of concrete subjected to the three
damaging processes is considerably reduced. D 2002 Elsevier Science Ltd. All rights reserved.
Keywords: Chloride; Durability; Fiber reinforcement; Freezing and thawing
1. Introduction
The evaluation of durability and service life is often
important and complicated in concrete applications. The
deterioration of concrete resulting from a single damaging
process (such as freeze–thaw cycles) does not seem to be
consistent with the actual environment where concrete
structures are exposed. It has been noted that the deteriora-
tion of concrete is accelerated when it is e
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