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Explicit finite element modeling of static crack propagation in reinforced concrete

机译:钢筋混凝土静裂纹扩展的显式有限元建模

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摘要

We propose a methodology to model complex fracture processes in reinforced concrete beams subjected to static loading. The discrete cohesive approach, accompanied by an insertion algorithm, is adopted and a modified dynamic relaxation method is chosen as an alternative solver. The concrete matrix and steel re-bars are modeled explicitly; the connection in between is represented by means of interface elements. Such elements allow for slip of re-bars and transmit forces to the matrix that may generate secondary cracking around the reinforcement. The methodology is validated against three-point bending tests on lightly reinforced concrete (LRC) beams.
机译:我们提出了一种方法来对承受静载荷的钢筋混凝土梁中的复杂断裂过程进行建模。采用离散内聚方法,并辅以插入算法,并选择一种改进的动态松弛方法作为替代求解器。混凝土基体和钢筋被明确建模。两者之间的连接通过接口元素表示。这样的元件允许钢筋滑移并且将力传递到基体,这会在钢筋周围产生二次裂纹。该方法针对轻型钢筋混凝土(LRC)梁的三点弯曲测试进行了验证。

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