Study on Flexural Strength of Interface between Full Lightweight Ceramsite Concrete and Ordinary Concrete

Author:

Zhu Hongbing123,Xiao Yu1,Li Xiu4,Wang Ye1,Wen Siyu1

Affiliation:

1. School of Urban Construction, Wuhan University of Science and Technology, Wuhan 430065, China

2. High Performance Engineering Structure Research Institute, Wuhan University of Science and Technology, Wuhan 430065, China

3. Hubei Provincial Engineering Research Center of Urban Regeneration, Wuhan University of Science and Technology, Wuhan 430065, China

4. School of Transportation Engineering, Wuhan Technical College of Communications, Wuhan 430065, China

Abstract

The efficacy of full lightweight ceramsite concrete as a restorative material has been widely acknowledged, given its light weight, strength, and durability. However, the extent of its performance in repairing existing or old concrete remains uncertain. This study examined the reparation of flexural performance with full lightweight ceramsite concrete, using 14 different combinations of old and new concrete test blocks. The primary focus of the study was on investigating the flexural bond strength of the interface between the old and the new concrete. This included understanding the effects of the interfacial roughness, interfacial agent type, and concrete curing age of the concrete on the flexural strength. The test results showed that increasing the interface roughness from 0 mm to 5 mm resulted a restoration of the flexural strength of the sample by approximately 59%. Additionally, the flexural strength of the specimens was restored by 62%–78% of their original strength with the application of different types of interfacial agent. To rank the impact of these factors on the flexural strength, a univariate analysis of variance was conducted. This allowed us to establish a mathematical formula for calculating the flexural capacity of old and new concrete interfaces, taking the three aforementioned factors into account.

Funder

National Natural Science Foundation of China

Hubei Provincial Excellent Young and Middle-Aged Science and Technology Innovation Team Project of Colleges and Universities

The 14th Five Year Plan Hubei Provincial Advantaged Characteristic Disciplines (groups) Project of Wuhan University of Science and Technology

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

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