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Size effect on seismic performance of high-strength reinforced concrete columns subjected to monotonic and cyclic loading

机译:大强度钢筋混凝土柱对单调和循环载荷的抗震性能的尺寸影响

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摘要

It has been shown that as concrete strength increases, the size effect becomes more pronounced in both samples and members. However, the effect of section size on the seismic performance of high-strength reinforced concrete columns requires further confirmation. For this purpose, six high-strength reinforced concrete columns were subjected to monotonic and cyclic loading in this study. The experimental results indicate that the relative nominal flexural strength, average energy dissipation coefficient, factor of safety, and local factor of safety all exhibited a strong size effect by decreasing as the column size increased. Moreover, the size effect on the factor of safety was stronger for high-strength columns than for conventional columns. The observed changes in the factor of safety were in good agreement with the Type 2 size effect model proposed by Bazant; so, using the local factor of safety and Balant's Type 2 model, the code equation for moment capacity was modified to provide a constant factor of safety regardless of column size.
机译:已经表明,随着混凝土强度的增加,样品和成员的尺寸效应变得更加明显。然而,截面规模对高强度钢筋混凝土柱的地震性能的影响需要进一步确认。为此目的,在本研究中对六个高强度钢筋混凝土柱进行单调和循环加载。实验结果表明,相对标称弯曲强度,平均能量耗散系数,安全系数,以及局部安全因素全部随着柱尺寸的增加而降低而呈现出强大的效果。此外,对安全系数的尺寸效应对于高强度柱比传统柱更强。观察到的安全因子的变化与诸群人提出的2型尺寸效果模型吻合吻合;因此,使用安全和捆包类型2模型的局部因素,修改了时刻容量的代码方程,以提供恒定的安全系数,而不管列大小如何。

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