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Performance based design of reinforced concrete beams under impact

机译:冲击下钢筋混凝土梁的基于性能的设计

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The purpose of this research is to collect fundamental data and to establish a performance-based design method for reinforced concrete beams under perpendicular impact load. Series of low speed impact experiments using reinforced concrete beams were performed varying span length, cross section and main reinforcement. The experimental results are evaluated focusing on the impact load characteristics and the impact behaviours of reinforced concrete beams. Various characteristic values and their relationships are investigated such as the collision energy, the impact force duration, the energy absorbed by the beams and the beam response values. Also the bending performance of the reinforced concrete beams against perpendicular impact is evaluated. An equation is proposed to estimate the maximum displacement of the beam based on the collision energy and the static ultimate bending strength. The validity of the proposed equation is confirmed by comparison with experimental results obtained by other researchers as well as numerical results obtained by FEM simulations. The proposed equation allows for a performance based design of the structure accounting for the actual deformation due to the expected impact action.
机译:这项研究的目的是收集基础数据并建立基于性能的钢筋混凝土梁在垂直冲击荷载下的设计方法。 使用钢筋混凝土梁进行的一系列低速冲击试验在不同的跨距长度,横截面和主要钢筋上进行。 评估实验结果的重点是钢筋混凝土梁的冲击荷载特性和冲击性能。研究了各种特征值及其关系,例如碰撞能量,冲击力持续时间,梁吸收的能量以及梁响应值。还评估了钢筋混凝土梁抵抗垂直冲击的弯曲性能。 提出了一个方程,根据碰撞能量和静态极限弯曲强度估算梁的最大位移。通过与其他研究人员获得的实验结果以及通过有限元模拟获得的数值结果进行比较,证实了所提出方程的有效性。所提出的方程式允许对结构进行基于性能的设计,以应对由于预期的冲击作用而引起的实际变形。

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