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Comparison and prediction of seismic performance for shear walls composed with fiber reinforced concrete

机译:用纤维增强混凝土组成的剪力墙抗震性能的比较与预测

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摘要

Concrete cracking due to brittle tension strength significantly prevents fully utilization of the materials for ?flexural shear failure? type shear walls. Theoretical and experimental studies applying fiber reinforced concrete (FRC) have achieved fruitful results in improving the seismic performance of ?flexural-shear failure? reinforced concrete shear walls. To come to an understanding of an optimal design strategy and find common performance prediction method for design methodology in terms to FRC shear walls, seismic performance on shear walls with PVA and steel FRC at edge columns and plastic region are compared in this study. The seismic behavior including damage mode, lateral bearing capacity, deformation capacity, and energy dissipation capacity are analyzed on different fiber reinforcing strategies. The experimental comparison realized that the lateral strength and deformation capacity are significantly improved for the shear walls with PVA and steel FRC in the plastic region and PVA FRC in the edge columns; PVA FRC improves both in tensile crack prevention and shear tolerance while steel FRC shows enhancement mainly in shear resistance. Moreover, the tensile strength of the FRC are suggested to be considered, and the steel bars in the tension edge reaches the ultimate strength for the confinement of the FRC in the yield and maximum lateral bearing capacity prediction comparing with the model specified in provisions.
机译:由于脆性张力强度,混凝土裂缝显着防止了充分利用材料?弯曲剪切失效?剪切墙。应用纤维增强混凝土(FRC)的理论和实验研究取得了富有成效的结果,提高了抗震性能的抗震性能?钢筋混凝土剪力墙。为了了解最佳的设计策略,并在剪切墙上找到用于FRC剪力墙的常见性能预测方法,在该研究中将剪力墙上的剪力墙上的抗震性能进行比较。在不同的纤维增强策略上分析了包括损坏模式,横向承载能力,变形容量和能量耗散能力的地震行为。实验比较意识到塑料区域中具有PVA和钢FRC的剪切壁和边缘柱中的PVA FRC的剪切壁显着改善了横向强度和变形容量; PVA FRC在拉伸裂纹防护和剪切公差中改善,而钢FRC主要显示出主要抗剪切抗性。此外,建议考虑FRC的拉伸强度,并且张力边缘中的钢筋达到与在规定中规定的模型相比的屈服和最大横向承载能力预测中的终极强度。

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