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40-Year-old full-scale concrete bridge girder strengthened with prestressed CFRP plates anchored using gradient method

机译:用梯度法锚固的预应力CFRP板加固40年的全尺寸混凝土桥梁

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摘要

A 17 m long internally prestressed concrete girder taken from a bridge in southern Switzerland was strengthened flexurally using prestressed CFRP plates and then tested to failure. The prestressing level in the plates was 32% of their nominal tensile strength. The load carrying behaviour of this test girder was compared to a reference girder and a girder strengthened using non-prestressed plates. For the anchorage of the prestressed CFRP plates, a method developed at Empa was used. In this method, the force in the CFRP plate is reduced to zero at the plate ends and permanent anchorage system is not required.rnThe experiments proved the feasibility of anchoring CFRP plates using the gradient method. Repeated loading showed stable tensile strains in the plates and shear stresses between the plates and concrete. Furthermore, prestressing resulted in decreased deflections and strains and a 45% increase in maximum recorded load.
机译:取自瑞士南部一座桥梁的17 m长的内部预应力混凝土梁,使用预应力CFRP板进行了挠曲加固,然后进行了破坏测试。板中的预应力水平为其标称抗拉强度的32%。将该试验梁的承载行为与参考梁进行了比较,并使用非预应力板加固了该梁。对于预应力CFRP板的锚固,使用了Empa开发的方法。在这种方法中,CFRP板的力在板端减小到零,不需要永久锚固系统。实验证明了用梯度法锚固CFRP板的可行性。反复加载显示板中稳定的拉伸应变以及板与混凝土之间的剪切应力。此外,预应力导致挠曲和应变减小,最大记录载荷增加了45%。

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