Effect of Interlayer Bonding Temperature on the Bending Properties of Asphalt Concrete Core Wall

Author:

Han Qunzhu12,Dong Haoyu12ORCID,Zhang Yingbo12,Gao Taotao12,Song Ge12,Wang Shanwang12

Affiliation:

1. State Key Laboratory of Eco-Hydraulics in Northwest Arid Region, Xi’an University of Technology, Xi’an 710048, China

2. School of Civil Engineering and Architecture, Xi’an University of Technology, Xi’an 710048, China

Abstract

In the construction process of an asphalt concrete impermeable core wall, the interlayer bonding of the core wall is the weak link of the core wall structure and also the focus of construction, so it is important to carry out research on the influence of interlayer bonding temperature on the bending performance of an asphalt concrete core wall. In this paper, we study whether asphalt concrete core walls could be treated with cold-bonding by fabricating small beam bending specimens with different interlayer bond temperatures and conducting bending tests on them at 2 °C. The effect of temperature variation on the bending performance of the bond surface under the asphalt concrete core wall is studied through experimental data analysis. The test results show that the maximum value of porosity of bituminous concrete specimens is 2.10% at lower bond surface temperature of −25 °C, which does not meet the specification requirement of less than 2%. The bending stress, strain, and deflection of bituminous concrete core wall increase with the increase of bond surface temperature, especially when the bond surface temperature is less than −10 °C. If the lower bonding surface temperature is less than 10 °C, the upper layer of asphalt mixture with large grain size aggregate cannot be effectively buried in the low bond surface, resulting in flat fracture and brittle damage to the specimen, which is detrimental to construction quality; therefore, the bonding surface should be heated so that the temperature of the bottom bonding surface is 30 °C. If the lower bonding surface temperature is 10 °C or above, no heating is required.

Funder

Key Program of National Natural Science Foundation of China

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Materials Science

Reference33 articles.

1. Experimental research on asphalt concrete impervious core wall for Yele hydropower station;Manli;J. Hydroelectr. Eng.,2004

2. Watertightness, cracking resistance, and self-healing of asphalt concrete used as a water barrier in dams;Zhang;J. Can. Geotech. J.,2013

3. Design of seepage control of upper reservoir bottom of a pumped-storage power station by using geomembrane;Ailin;J. Chin. J. Geotech. Eng.,2016

4. Research on the suitability of acidic gravels for asphalt core of embankment dam;Yingbo;J. Hydraul. Eng.,2012

5. Important topics in development of asphalt concrete technology in China;Jutao;J. Hydraul. Eng.,2008

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