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体外无粘结碳纤维增强塑料筋加固预应力混凝土梁的研究

Study on Prestressed Concrete Beams Strengthened with External Unbonded CFRP Tendons.

作者信息

Chen Longlong, Qiang Xuhong, Jiang Xu, Dong Hao, Chen Wulong

机构信息

College of Civil Engineering, Tongji University, Shanghai 200092, China.

China Design Group Co., Ltd., Nanjing 210014, China.

出版信息

Materials (Basel). 2024 Sep 20;17(18):4622. doi: 10.3390/ma17184622.

Abstract

This study builds a refined finite element (FE) model to research the flexural behavior of a reinforced beam with prestressed CFRP tendons. The precision of the FE model is validated through a comparison with the experimental outcomes. The numerical findings align well with the experimental outcomes, encompassing the failure mode, load-deflection curve, load-strain curves of concrete, steel reinforcements and CFRP tendons. The variances between predicted values and experimental results are within 10%. Leveraging the verified FE model, an extensive parametric study has been carried out to examine the effects of various parameters, including the CFRP tendon prestress, the CFRP tendon diameter, the deviator layout, the anchorage height and the prestressing strand prestress. Leveraging the findings from the parametric study, some refined design recommendations are proposed for practical reinforcement applications: Increasing the CFRP tendon prestress in practical reinforcement designs is recommended; CFRP tendons with larger diameters are recommended for use in practical reinforcement designs; Employing a linear CFRP tendon profile for reinforcement is not considered optimal in practical applications; The prestress loss in the prestressing strands of PC beams should be considered in practice.

摘要

本研究建立了一个精细化有限元(FE)模型,以研究预应力CFRP筋增强梁的弯曲行为。通过与实验结果进行比较,验证了有限元模型的精度。数值结果与实验结果吻合良好,包括破坏模式、荷载-挠度曲线、混凝土、钢筋和CFRP筋的荷载-应变曲线。预测值与实验结果之间的差异在10%以内。利用经过验证的有限元模型,进行了广泛的参数研究,以考察包括CFRP筋预应力、CFRP筋直径、转向器布置、锚固高度和预应力钢绞线预应力等各种参数的影响。利用参数研究的结果,为实际加固应用提出了一些精细化设计建议:建议在实际加固设计中提高CFRP筋的预应力;建议在实际加固设计中使用较大直径的CFRP筋;在实际应用中,采用线性CFRP筋布置进行加固并非最佳选择;实际中应考虑PC梁预应力钢绞线中的预应力损失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e47f/11433174/a70df15f32a3/materials-17-04622-g001.jpg

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