Experimental and Analytical Study on Residual Stiffness/Strength of CFRP Tendons under Cyclic Loading

Author:

Wang Chao,Zhang Jiwen

Abstract

Based on tension–tension fatigue tests, this paper investigated the mechanical property degradation of carbon fiber reinforced polymer (CFRP) tendons from a macroscopic perspective. According to the degradation regularity, this paper proposed a normalized phenomenological fatigue model based on the residual stiffness/strength of CFRP tendons during the fatigue loading process. In this paper, the residual stiffness of CFRP tendons were tested at five stress ranges, while the residual strength was tested at four stress ranges. In order to validate the reliability and applicability of proposed fatigue damage model, the predictions of proposed model and cited models from the literature are discussed and compared. Furthermore, experimental results from literatures were adopted to verify the accuracy of the proposed model. The results showed that the proposed model is applicable to predict both residual stiffness and residual strength throughout fatigue life cycle and has a better accuracy than models from the literature. Moreover, the three-stage degradation can be observed from the degradation processes of stiffness and strength at each stress level.

Publisher

MDPI AG

Subject

General Materials Science

Reference42 articles.

1. Use of Composite Materials in Civil Infrastructure in Japan;Karbhari,1998

2. Design-Construction of Bridge Street Bridge — First CFRP Bridge in the United States

3. First application of CFRP cables for a cable-stayed bridge in China;Lu;Tumu Gongcheng Xuebao (China Civ. Eng. J.),2007

4. Fatigue damage modeling of fibre-reinforced composite materials: Review

5. Modeling Stiffness Reduction of Graphite/Epoxy Composite Laminates

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