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Damage Sensitivity Analysis for Main Design Parameters of Steel Reinforced Concrete Beam

机译:钢筋混凝土梁主要设计参数损伤灵敏度分析

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Considering of the condition that the steel reinforced concrete beam is mainly used to bear the vertical load and preserve the robustness of integrated structure, this paper takes the flexural rigidity of beam subjected to short-term load effect as the damage characterization of SRC beam. According to the related theoretical analysis and experimental research, the damage sensitivity of various design parameters which contain the sectional height, the strength of concrete and steel ratio are analyzed, and the influence laws of main design parameters impacted on damage evolution of SRC beam are revealed. The research shows that sectional height is proved to be the most sensitive factor in the damage of SRC beam and the steel ratio takes the second place, and then the strength of concrete is the most insensitive to the damage of SRC beam. The research achievements will provide theory and date support for establishing the storey damage model of SRC frame structure under seismic excitation.
机译:考虑到钢筋混凝土梁主要用于承受垂直载荷并保持综合结构的稳健性的条件,本文采用短期载荷效应的梁抗弯曲刚度作为SRC梁的损伤表征。根据相关的理论分析和实验研究,分析了各种设计参数的损伤灵敏度,分析了截面高度,混凝土和钢比的强度,并揭示了对SRC梁损伤演化影响的主要设计参数的影响规律。该研究表明,被证明是SRC梁损坏的截面高度,钢比占第二名,然后混凝土的强度对SRC梁的损坏最不敏感。研究成果将提供理论和日期支持,用于在地震激励下建立SRC框架结构的岩石损伤模型。

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