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首页> 外文期刊>Journal of structural engineering >Integrated Fracture-Based Model Formulation for RC Crack Analysis
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Integrated Fracture-Based Model Formulation for RC Crack Analysis

机译:RC裂纹分析的基于断裂的集成模型公式

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摘要

There is an opportunity to revisit and generalize classical theories for concrete cracking in light of increased interest in the use of nonconventional reinforcing materials and material efficiency. Fracture-based models to describe concrete cracking have potential but a limitation has been that many variables and different phenomena have to be incorporated to produce realistic material models. In this paper, an integrated fracture-based model (IFBM) is developed to predict the behavior of lightly reinforced concrete beams. The proposed model is a closed-form solution that integrates different local phenomena to more precisely describe the onset of cracking, crack propagation and crack rotation. The IFBM incorporates postcracking tensile stresses in the concrete, the bond-slip behavior between the reinforcement and concrete, and compression softening in the concrete compressive zone. The model can predict parameters such as the crack length development and crack mouth opening displacement in Mode I lightly reinforced concrete flexural specimens subjected to three-point bending. The predictions show a fairly good agreement with experimental results for small-scale reinforced concrete beams with low reinforcement ratios (0.15-0.5%). The ability of the IFBM to identify specific failure modes and to capture the crack propagation and crack rotation stages of behavior in lightly reinforced concrete beams are particular advantages. Such an approach provides a powerful tool to study the problem of minimum reinforcement requirements.
机译:鉴于人们对使用非常规增强材料和提高材料效率的兴趣日益浓厚,因此有机会重新审视和推广混凝土开裂的经典理论。描述混凝土开裂的基于断裂的模型具有潜力,但局限性在于必须结合许多变量和不同现象才能生成逼真的材料模型。在本文中,建立了基于断裂的集成模型(IFBM)来预测轻型钢筋混凝土梁的性能。所提出的模型是一种封闭形式的解决方案,它整合了不同的局部现象,以更精确地描述裂纹,裂纹扩展和裂纹旋转的开始。 IFBM包括混凝土中的开裂后张应力,钢筋与混凝土之间的粘结滑移行为以及混凝土压缩区中的压缩软化。该模型可以预测I型轻型钢筋混凝土受弯三点弯曲试样的裂缝长度发展和裂缝张口位移等参数。预测结果表明,对于低配筋率(0.15-0.5%)的小型钢筋混凝土梁,试验结果与试验结果相当吻合。 IFBM能够识别轻型钢筋混凝土梁中特定的破坏模式并捕获其行为的裂纹扩展和裂纹旋转阶段的能力特别具有优势。这样的方法提供了一个强大的工具来研究最小加固要求的问题。

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