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Shrinkage and Interior Humidity of Concrete under Dry–Wet Cycles

Drying Technology, 2012
The dry–wet cycle is one of the aggressive environmental conditions suffered by concrete. This article focuses on the experimental study and theoretical simulation of shrinkage of concrete during dry–wet cycles. The experimental results show that the interior relative humidity of concrete is periodically changed during dry–wet cycles.
Jun Zhang, Yuan Gao, Yudong Han, Wei Sun
openaire   +1 more source

Chloride migration in PPF concrete under dry-wet cycle

2011 International Conference on Electric Technology and Civil Engineering (ICETCE), 2011
In order to study the Cl− penetration depth in polypropylene fiber concrete with different volume, indoor artificial method was used to simulate dry-wet cycle, and the concentrations of AgNO 3 solution indicator on the Cl− concentration at the color change boundary of the specimens was investigated.
null Wang Chen-fei, null Niu Di-tao
openaire   +1 more source

Influence of Sulfate Attack and Drying-Wetting Cycle on Properties of Mortar

Applied Mechanics and Materials, 2012
This paper presents the study on mortar specimens exposed to three kinds of Na2SO4 solution(0.5%,5%and10%)and different drying-wetting cycles(20,30,40and75). Influence of cycle number and solution concentration on mechanical behavior, mass and appearance of mortar specimen was analysis.
Da Chen, Na Wang, Chao Hua Jiang
openaire   +1 more source

Study on the decay behavior of the stability of asphalt mixture under different dry-wet cycle conditions

Construction and Building Materials, 2021
Mingyang Gong, Jingyun Chen
exaly  

Sandstone weathering under dry–wet cycling in NaCl solution

Bulletin of Engineering Geology and the Environment, 2022
Yuanpeng Cao   +4 more
openaire   +1 more source

Centrifuge Modeling of Drying–Wetting Cycle Effect on Soil Slopes

International Journal of Geomechanics, 2023
Fangyue Luo, Ga Zhang, Changhui Ma
openaire   +1 more source

Comparative study on corrosion behaviour of rusted X100 steel in dry/wet cycle and immersion environments

Construction and Building Materials, 2020
Ke Gong, Ming Wu, Guangxin Liu
exaly  

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