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首页> 外文期刊>Journal of Sound and Vibration >Modeling the dynamic stiffness of cracked reinforced concrete beams under low-amplitude vibration loads
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Modeling the dynamic stiffness of cracked reinforced concrete beams under low-amplitude vibration loads

机译:在低振幅振动载荷下模拟开裂钢筋混凝土梁的动态刚度

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摘要

In this paper, a model, initially developed to calculate the stiffness of cracked reinforced concrete beams under static loading, is used to assess the dynamic stiffness. The model allows calculating the average inertia of cracked beams by taking into account the effect of bending cracks (primary cracks) and steel-concrete bond damage (i.e. interfacial micro cracks). Free and forced vibration experiments are used to assess the performance of the model. The respective influence of bending cracks and steel-concrete bond damage on both static and dynamic responses is analyzed. The comparison between experimental and simulated deflections confirms that the effects of both bending cracks and steel-concrete bond loss should be taken into account to assess reinforced concrete stiffness under service static loading. On the contrary, comparison of experimental and calculated dynamic responses reveals that localized steel-concrete bond damages do not influence significantly the dynamic stiffness and the fundamental frequency. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,最初用于计算开裂的钢筋混凝土梁在静载荷下的刚度的模型用于评估动态刚度。该模型可以通过考虑弯曲裂纹(主要裂纹)和钢-混凝土粘结破坏(即界面微裂纹)的影响来计算裂纹梁的平均惯性。自由振动和强制振动实验用于评估模型的性能。分析了弯曲裂纹和钢-混凝土粘结破坏分别对静态和动态响应的影响。实验挠度和模拟挠度的比较证实,应评估弯曲裂纹和钢混凝土粘结损耗的影响,以评估在使用静载荷下的钢筋混凝土刚度。相反,对实验和计算的动力响应的比较表明,局部钢-混凝土粘结破坏不会显着影响动力刚度和基频。 (C)2016 Elsevier Ltd.保留所有权利。

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