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A general numerical model for predicting the flexural behavior of hybrid FRP-steel reinforced concrete beams

机译:一种预测混合玻璃钢钢筋混凝土梁弯曲行为的一般数值模型

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Hybrid fiber reinforced polymer (FRP)-steel reinforced concrete (RC) beams exhibit different flexural failure modes with different reinforcement ratios and the contributions from tensile region and compressive region of the beams to flexural behavior vary accordingly. Therefore, a general model to predict the global nonlinear behavior of hybrid FRP-steel RC beams featured by common flexural failure modes is critical to analysis and design. In this paper, flexural behavior of a hybrid FRP-steel RC beam is considered as the systematic combination of mechanical behavior of FRP and steel RC tension chords and concrete strut. The Tension Chord Model (TCM) for steel and its extended application for FRP, properly considering the bond performance between FRP/ steel reinforcement and the surrounding concrete, are employed to represent the tension stiffening effect in tensile region; the Linear Softening Model (LSM), incorporating the compressive fracture energy and considering the confinement effect, is applied to predict the softening behavior of compressive concrete. Based on the primary principles of equilibrium and compatibility, the aforementioned two models are assembled to numerically evaluate the advanced moment-curvature relationship and flexural behavior. Due to the proper combination and application of mechanical models, the global evaluation process is significantly simplified and avoids the lengthy iterative calculations performed in conventional numerical methods. Finally, the proposed calculational model is validated by comparisons between the predictions and experimental results of hybrid FRP-steel RC beams with common flexural failure modes available in the literature.
机译:杂交纤维增强聚合物(FRP) - 钢筋混凝土(RC)梁具有不同的弯曲故障模式,具有不同的增强比和来自梁的拉伸区域和梁的压缩区域与弯曲行为的贡献相应地变化。因此,预测通过常见弯曲失效模式特征的混合FRP钢RC光束的全局模型是分析和设计的关键。本文认为,混合钢钢RC光束的弯曲行为被认为是FRP和钢RC张力弦和混凝土支柱的力学行为的系统组合。钢的张力和弦型号(TCM)及其对FRP的扩展应用,适当考虑FRP /钢筋和周围混凝土之间的粘合性能,以表示拉伸区域的张力加强效果;施加压缩骨折能量并考虑限制效果的线性软化模型(LSM),用于预测压缩混凝土的软化行为。基于均衡和兼容性的主要原理,上述两种模型组装成数值评估先进的力矩曲率关系和弯曲行为。由于机械模型的适当组合和应用,全局评估过程被显着简化,避免了以常规数值方法进行的冗长迭代计算。最后,通过在文献中具有常见的弯曲破坏模式的混合FRP - 钢RC梁的预测和实验结果与普通弯曲失效模式之间的预测和实验结果的比较验证了所提出的计算模型。

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