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栓钉连接双钢板-再生混凝土组合剪力墙抗震性能试验研究
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Seismic Performance Tests and Numerical Analysis of Recycled Aggregate Concrete-filled Double Steel Plate Composite Shear Walls with Studs
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    摘要:

    为研究栓钉连接双钢板-再生混凝土组合剪力墙的抗震性能,设计并完成了3组不同剪跨比试件拟静力加载试验.基于此试验建立数值模型,研究再生骨料取代率、混凝土强度等对抗震性能的影响.试验结果表明:结构钢板鼓曲现象主要出现在试件底部;剪跨比是影响结构破坏的重要因素,随剪跨比增大,试件破坏形态由剪切破坏转变为压弯破坏,钢板表面观察到明显栓钉痕迹;剪跨比从1分别增大至1.5和2,极限荷载分别降低了25.9%、45.0%,位移延性系数分别增大了9.2%、29.7%,等效粘滞阻尼系数分别增大了26.0%、89.3%;各试件破坏位移角在1/63~1/45之间,能够满足抗震规范的要求,具有良好的变形性能.通过数值模拟发现,提高再生混凝土强度等级,能够有效提高试件的初始抗侧刚度和极限承载力,减小轴压比、增大外包钢板强度均能提高试件抗剪承载力和抗侧刚度.考虑再生混凝土和钢板的组合作用,结合已有规范提出的组合剪力墙计算公式具有8%~15%的冗余度,计算结果偏于安全,计算方法较为合理.

    Abstract:

    To study the seismic performance of double steel plates and recycled concrete composite shear walls, three groups of quasi-static loading tests with varying shear-to-span ratios were designed and completed. A numerical model was established based on these experiments to investigate the impact of recycled aggregate replacement rate and concrete strength on seismic performance. The test results indicated that the buckling phenomenon predominantly took place at the bottom of the specimens for the structural steel plates, and the shear-to-span ratio emerged as a critical factor influencing the structural failure. As the shear-to-span ratio increased, the failure mode of the specimens transitioned from shear failure to flexural failure, accompanied by noticeable bolt traces on the surface of the steel plates. As the shear-to-span ratio was increased from 1 to 1.5 and 2, the ultimate load was decreased by 25.9% and 45.0%, respectively, while the displacement ductility coefficient was increased by 9.2% and 29.7%, and the equivalent viscous damping coefficient was increased by 26.0% and 89.3%. Each specimen exhibited a failure displacement angle ranging from 1/63 to 1/45, satisfying the seismic design code requirements and demonstrating excellent deformation performance. Numerical simulations demonstrated that enhancing the strength grade of recycled concrete can significantly enhance the initial lateral stiffness and ultimate bearing capacity of the specimens. Both reducing the axial compression ratio and augmenting the strength of the external steel plates can enhance the shear capacity and lateral stiffness of the specimens. By considering the synergistic effects of concrete and steel plates and aligning with the existing design codes, a composite shear wall calculation formula was proposed, incorporating an 8%~15% redundancy factor to ensure conservative and reasonable calculation outcomes.

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韦芳芳 ?,陈卓然 ,华子伟 ,李丽萍 .栓钉连接双钢板-再生混凝土组合剪力墙抗震性能试验研究[J].湖南大学学报:自然科学版,2025,52(7):10~23

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  • 在线发布日期: 2025-07-31
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