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首页> 外文期刊>European Journal of Environmental and Civil Engineering >Crack propagation analysis of reinforced concrete wall under cyclic loading using RBSM
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Crack propagation analysis of reinforced concrete wall under cyclic loading using RBSM

机译:基于RBSM的循环荷载作用下钢筋混凝土墙裂缝扩展分析。

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This paper presents the numerical simulations of the reinforced concrete (RC) panels and the RC shear walls under monotonic and cyclic loading in order to validate the ability of the proposed model which is based on the Rigid-Body-Spring Model (RBSM) to predict the crack propagation behaviours. The authors have already developed constitutive models for the three-dimensional RBSM with random geometry in order to quantitatively evaluate the mechanical responses including softening and localization fractures, and have shown that the model can well simulate the cracking and failure behaviours of RC members. In this study, the constitutive models were extended to include cyclic effects and the model was validated through the simulations of the RC panel tests under cyclic loadings, which were reported in the literatures. Furthermore, the simulations of the RC shear wall tests, which were tested in the context of the international benchmark ConCrack (http://www. concrack.org/) were carried out, and the capability of the model to predict the detailed cracking information, such as crack width, spacing and direction of propagation is discussed.
机译:本文介绍了钢筋混凝土面板和钢筋混凝土剪力墙在单调和循环荷载作用下的数值模拟,以验证所提出的基于刚体-弹簧模型(RBSM)的模型进行预测的能力。裂纹扩展行为。作者已经开发了具有随机几何形状的三维RBSM的本构模型,以便定量评估包括软化和局部断裂在内的机械响应,并表明该模型可以很好地模拟RC构件的开裂和破坏行为。在本研究中,本构模型扩展到包括循环效应,并且该模型通过在循环载荷下的RC面板试验的模拟进行了验证,该文献已有报道。此外,还进行了RC剪力墙试验的模拟,该试验是在国际基准ConCrack(http:// www。concrack.org/)的背景下进行的,模型具有预测详细裂缝信息的能力。讨论了裂纹宽度,间距和传播方向。

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