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Prediction of Flexural Capacity of RC Beams Strengthened in Flexure with FRP Fabric and Cementitious Matrix

机译:用FRP织物和水泥基质弯曲强度加强RC梁弯曲能力的预测

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摘要

This paper presents both experimental and analytical research results for predicting the flexural capacity of reinforced concrete (RC) beams strengthened in flexure with fabric reinforced cementitious matrix (FRCM). In order to assess the efficiency of the FRCM-strengthening method, six beams were strengthened in flexure with FRCM composite having different amounts and layers of FRP fabric and were tested under four-point loading. From test results, it was confirmed that the slippage between the FRP fabric and matrix occurs at a high strain level, and all of the FRCM-strengthened beams failed by the debonding of the FRCM. Additionally, a new bond strength model for FRCM considering the slippage between fabric and matrix was proposed, using a test database to predict the strengthening performance of the FRCM composite. The prediction of the proposed bond strength model agreed well with the debonding loads of the test database.
机译:本文介绍了试验和分析研究结果,以预测钢筋混凝土(RC)梁的弯曲能力,纺织纤维增强胶质基质(FRCM)加强弯曲。为了评估FRCM强化方法的效率,在弯曲中加强了六个光束,FRCM复合物具有不同量的FRP织物层,并在四点载荷下进行测试。从测试结果中,证实了FRP织物和基质之间的滑动在高应变水平下发生,并且所有FRCM加强的光束都通过FRCM的剥离而失败。另外,提出了一种用于CRCM的新键强模型,考虑织物和基质之间的滑动,使用测试数据库预测FRCM复合材料的强化性能。建议债券强度模型的预测很好地与测试数据库的禁止负载很好。

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