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Mesoscopic numerical analysis of reinforced concrete beams using a modified micro truss model

机译:改进的微桁架模型对钢筋混凝土梁的细观数值分析

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Concrete is a heterogeneous material consisting of coarse aggregate, mortar matrix and interfacial zones at the meso level. Though studies have been done to interpret the fracture process in concrete using meso level models, not much work has been done for simulating the macroscopic behaviour of reinforced concrete structures using the meso level models. This paper presents a procedure for the mesoscopic analysis of reinforced concrete beams using a modified micro truss model. The micro truss model is derived based on the framework method and uses the lattice meshes for representing the coarse aggregate (CA), mortar matrix, interfacial zones and reinforcement bars. A simple procedure for generating a random aggregate structure is developed using the constitutive model at meso level. The study reveals the potential of the mesoscopic numerical simulation using a modified micro truss model to predict the nonlinear response of reinforced concrete structures. The modified micro truss model correctly predicts the load-deflection behaviour, crack pattern and ultimate load of reinforced concrete beams failing under different failure modes.
机译:混凝土是一种非均质材料,由中观水平的粗骨料,砂浆基质和界面区域组成。尽管已经进行了研究以细观水平模型来解释混凝土的断裂过程,但是在细观水平模型中模拟钢筋混凝土结构的宏观行为方面所做的工作还很少。本文提出了一种使用改进的微桁架模型进行钢筋混凝土梁的介观分析的程序。基于框架方法推导了微桁架模型,并使用晶格网格来表示粗骨料(CA),砂浆基质,界面区域和钢筋。使用本构模型在中观水平上开发了一种用于生成随机聚集结构的简单程序。研究揭示了使用改进的微桁架模型进行介观数值模拟预测钢筋混凝土结构非线性响应的潜力。改进的微桁架模型可以正确预测在不同破坏模式下失效的钢筋混凝土梁的荷载-挠度行为,裂缝模式和极限荷载。

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