Experimental Study on Secondary Anchorage Bond Performance of Residual Stress after Corrosion Fracture at Ends of Prestressed Steel Strands

Author:

Yang Rihua12,Yang Yiming1,Zhang Xuhui3,Wang Xinzhong1

Affiliation:

1. School of Civil Engineering, Hunan City University, Yiyang 413000, China

2. Hunan Engineering Research Center of Development and Application of Ceramsite Concrete Technology, Hunan City University, Yiyang 413000, China

3. School of Civil Engineering and Mechanics, Xiangtan University, Xiangtan 411105, China

Abstract

In order to explore the secondary bond anchorage performance between prestressed tendons and concrete after the fracture of steel strands in post-tensioned, prestressed concrete (PPC) beams, a total of seven post-tensioned, prestressed concrete specimens with a size of 3 × 7ϕ15.2 mm were constructed firstly, and the steel strands at the anchorage end were subjected to corrosion fracture. Then, the pull-out test of the specimens was conducted to explore the secondary anchorage bond mechanism of the residual stress of prestressed tendons experiencing local fracture. Moreover, the influences of factors such as the embedded length, release-tensioning speed, concrete strength, and stirrup configuration on anchorage bond performance were analyzed. Finally, the test results were further verified via finite element analysis. The results show that the failure of pull-out specimens under different parameters can be divided into two types: bond anchorage failure induced by the entire pull-out of steel strands and material failure triggered by the rupture of steel strands. The bond anchorage failure mechanism between steel strands and the concrete was revealed by combining the failure characteristics and pull-out load–slippage relation curves. The bond strength between prestressed steel strands and concrete can be enhanced by increasing the embedded length of steel strands, elevating the concrete strength grade, and enlarging the diameter of stirrups so that the specimens are turned from bond anchorage failure into material failure.

Funder

National Natural Science Foundation of China

Science and Technology Innovation Program of Hunan Province

Research Foundation of Education Bureau of Hunan Province

the Aid program for the Science and Technology Innovative Research Team in the Higher Educational Institutions of Hunan Province

Publisher

MDPI AG

Subject

General Materials Science

Reference29 articles.

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