Interfacial cohesion model of ultra‐high performance concrete wet joints under the influence of multiple factors

Author:

Wang Tao1,Xu Jun12ORCID,Du Dagang1,Su Chuanye1,Shi Xiaofei3

Affiliation:

1. College of Civil Engineering and Architecture Jiangsu University of Science and Technology Zhenjiang China

2. Jiangsu Key Laboratory of Construction Materials, School of Materials Science and Engineering Southeast University Nanjing China

3. School of Naval Architecture and Ocean Engineering Jiangsu Shipping College Nantong China

Abstract

AbstractThe interfacial cohesion between precast normal concrete (NC) and cast‐in‐place ultra‐high performance concrete (UHPC) is an important index to evaluate their interfacial bond strength, which is of great importance for the application of UHPC as a connection material for precast structural bridges. Interfacial cohesion is related to several influencing factors. However, there needs to be more research on the interrelationship model between multiple influencing factors and interfacial cohesion. This study took the UHPC wet joint in a precast concrete structure as the object. First, the relationship between the interface cohesion of UHPC wet joint and substrate strength, UHPC age, interfacial roughness, interfacial moisture content, and curing method was studied; The result shows that the key factors affecting interfacial cohesion include UHPC age, interface roughness, and substrate strength, with interfacial moisture content potentially playing a secondary role. Second, the failure types of the interface zone surface by using digital image correlation (DIC) are divided into three categories. Finally, the quantitative mathematical model of interfacial cohesion under the coupling effect of multiple factors was established based on the above four factors. The model is in good agreement with the experimental data.

Funder

National Natural Science Foundation of China

State Key Laboratory of High Performance Civil Engineering Materials

Jiangsu Key Laboratory of Construction Materials

Publisher

Wiley

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