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Numerical Modelling and Simulation of the In-Plane Response of a Three-Storey Masonry-Infilled RC Frame Retrofitted with TRM

机译:三层砌体型号RC框架对TRM改装的平面响应的数值模拟与仿真

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A numerical study was conducted to investigate the in-plane behavior of a masonry-infilled reinforced concrete (RC) frame retrofitted with textile-reinforced mortar (TRM). A two-dimensional finite element model was developed using DIANA finite element analysis (FEA) software to simulate the 2?:?3 scaled three-storey masonry-infilled RC frame retrofitted with TRM that was studied experimentally in the past. The three-storey structure used in the test was with a nonseismic design and detailing, and was subjected to in-plane displacement-control cyclic loading. The current study evaluates the capabilities of a representative numerical model to simulate the results of the experimental test, and after the calibration of the numerical model sensitivity analysis and parametric study were performed. In order to create an accurate numerical model, suitable constitutive models, based on the smeared crack approach, were used to characterize the nonlinear response of concrete, masonry infill, and TRM. The calibration of the models was based on the experimental results or inverse fitting based on optimizing the simulation of the response. The numerical model proved capable of simulating the in-plane behavior of the retrofitted masonry-infilled RC frame with good accuracy in terms of initial stiffness, and its deterioration, shear capacity, and cracking patterns. The calibrated model was then used to perform sensitivity analysis in order to examine the influence of infill-frame interface properties (tangential and normal stiffness) on the behavior of the retrofitted infilled frame. The numerical results showed that the gap opening is influenced significantly by the stiffness of the interface. In addition, a parametric study was performed in order to evaluate the importance of the full-bond condition between the TRM and the masonry-infilled RC frame. The numerical results indicate that the composite action between the TRM and the masonry-infilled RC frame improves the global stiffness and lateral resistance of the infilled frame, and it reduces the gap opening between the masonry infill and the RC frame.
机译:进行了一种数值研究,以研究砌体 - 含油钢筋混凝土(RC)框架的平面行为用纺织品增强砂浆(TRM)。使用Diana有限元分析(FEA)软件开发了二维有限元模型来模拟2?:3缩放三层砌体夹住的RC框架,以便在过去研究的TRM。测试中使用的三层结构具有非造成的设计和细节,并进行面内位移控制循环载荷。目前的研究评估了代表数值模型的能力来模拟实验测试的结果,并且在进行数值模型敏感性分析和参数研究的校准之后。为了创建精确的数值模型,基于涂层裂纹方法的合适构成模型用于表征混凝土,砌体填充和TRM的非线性响应。模型的校准基于实验结果或基于优化响应模拟的反向拟合。证明了能够在初始刚度和劣化,剪切容量和破解模式的良好精度下模拟改装砌体填充RC帧的平面行为。然后使用校准模型来执行灵敏度分析,以检查填充框架界面性质(切向和正常刚度)对改装夹帧框架的行为的影响。数值结果表明,间隙开口受界面的刚度的显着影响。另外,进行参数研究以评估TRM和砌体infilled RC帧之间的全键状况的重要性。数值结果表明,TRM和砌体填充RC帧之间的复合动作提高了夹带框架的全局刚度和横向电阻,并且降低了砌体填充物和RC框架之间的间隙开口。

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