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使用预应力或非预应力粘结碳纤维增强塑料加固裂纹钢板的应力强度因子评估

Stress Intensity Factor Assessment for the Reinforcement of Cracked Steel Plates Using Prestressed or Non-Prestressed Adhesively Bonded CFRP.

作者信息

Lepretre Emilie, Chataigner Sylvain, Dieng Lamine, Gaillet Laurent

机构信息

SMC Laboratory, MAST Department, Gustave Eiffel University, Allée des Ponts et Chaussées, 44344 Bouguenais, France.

出版信息

Materials (Basel). 2021 Mar 26;14(7):1625. doi: 10.3390/ma14071625.

Abstract

The use of adhesively bonded carbon fiber reinforced polymer (CFRP) materials to reinforce cracked steel elements has gained widespread acceptance in order to extend the lifespan of metallic structures. This allows an important reduction of the stress intensity factor (SIF) at the crack tip and thus a significant increase of the fatigue life. This paper deals with the assessment of the SIF for repaired cracked steel plates, using semi-empirical analysis and finite element analysis. Metallic plates with only one crack originating from a center hole were investigated. Virtual crack closure technique (VCCT) was used to define and evaluate the stress intensity factor at crack tip. The obtained modeling results are compared with experimental investigations led by the authors for different reinforcement configurations including symmetrical and non-symmetrical reinforcement, normal modulus and ultra-high-modulus CFRP plates, and pre-stressed CFRP plates. Results show that finite element model (FEM) analysis can obviously simulate the fatigue performance of the CFRP bonded steel plates with different reinforcement configurations. Moreover, a parametric analysis of the influence of the pre-stressing level was also conducted. The results show that an increase of the pre-stressing level results in an increase of the fatigue life of the element.

摘要

为延长金属结构的使用寿命,采用粘结碳纤维增强聚合物(CFRP)材料加固开裂的钢构件已得到广泛认可。这能显著降低裂纹尖端的应力强度因子(SIF),从而大幅提高疲劳寿命。本文采用半经验分析和有限元分析方法,对修复后的开裂钢板的SIF进行评估。研究了仅在中心孔处有一条裂纹的金属板。采用虚拟裂纹闭合技术(VCCT)来定义和评估裂纹尖端的应力强度因子。将得到的建模结果与作者针对不同加固配置(包括对称和非对称加固、普通模量和超高模量CFRP板以及预应力CFRP板)所进行的实验研究结果进行比较。结果表明,有限元模型(FEM)分析能够明显模拟不同加固配置的CFRP粘结钢板的疲劳性能。此外,还对预应力水平的影响进行了参数分析。结果表明,预应力水平的提高会导致构件疲劳寿命的增加。

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