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体外预应力碳纤维布加固钢-混凝土组合梁的试验研究
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(同济大学土木工程学院建筑工程系, 上海 200092)

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Yin Shen, Born in Su-zhou, Jiangsu Province, graduated from the De-partment of Bridges, Tongji University in 2022.

通讯作者:

Xuhong Qiang

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Experimental Study on Steel‒Concrete Composite Beams Strengthened by Externally Prestressed CFRP Strips
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(Department of Construction Engineering, School of Civil Engineering, Tongji University, shanghai 200092, China)

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    摘要:

    本文主要研究体外预应力碳纤维板加固钢-混凝土组合结构简支梁桥的力学性能。从顶杆间引入碳纤维板预应力筋,既能对主梁施加预应力,又能在主梁底端提供一个向上的顶升力,减小原结构的挠度。因此,通过顶杆间引入碳纤维板预应力筋,可以提高加固施工的速度和效率。通过缩尺模型静力试验,研究了碳纤维布用量、预应力筋尺寸、顶杆数量等参数对组合梁刚度和承载力的影响。在张拉组合梁的弯曲试验中,通过增加预应力水平和CFRP板数量,有效提高了组合梁截面的弯曲惯性矩,对组合梁屈服承载力和极限弯曲承载力的加固效果提升明显,并且加固试件仍具有良好的韧性。对于第三个组合梁,使用15%预应力水平和3 mm厚度的CFRP板进行加固时,其极限承载能力提高了47.9%,下翼缘的屈服荷载提高了39.8%,弹性阶段的刚度提高了21.66%。

    Abstract:

    This paper mainly studies the mechanical properties of simply supported bridges of steel?concrete composite structures strengthened with externally prestressed CFRP plates. The introduction of the prestress of the CFRP plate from the support rods can not only apply prestress to the main beam but also provide an upward lifting force at the bottom end of the main beam to reduce the deflection of the original structure. Therefore, the CFRP board is prestressed by the support rods, which can improve the speed and efficiency of rein-forcement construction. The effects of the CFRP amount, prestress size, support rods amount and other parameters on the stiffness and bearing capacity of composite beams were studied by a static test of the scaled model. In the flexural test of the tensioned combination beam, by increasing the prestressing level and the number of CFRP plates, the flexural moment of inertia of the combination beam section was effectively improved, the reinforcement effect on the yield bearing capacity and ultimate flexural bearing capacity of the combination beam was obvious, and the reinforced specimens still had good ductility. For the third com-bination beam, a CFRP plate with a 15% prestressing level and 3 mm thickness was used for reinforcement. The ultimate load carrying capacity of the combined beam was increased by 47.9%; the yield load of the lower flange was increased by 39.8%; and the stiffness in the elastic phase was increased by 21.66%.

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Yin Shen, Xu Jiang, Xuhong Qiang, Longlong Chen Experimental Study on Steel‒Concrete Composite Beams Strengthened by Externally Prestressed CFRP Strips. Prestress Technology 2023,1(01):39-52. 10.59238/j. pt.2023.01.004

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  • 收稿日期:2023-03-10
  • 最后修改日期:2023-04-07
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  • 在线发布日期: 2023-06-21
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