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Advances in adhesive joining of carbon fibre/polymer composites to steel members for repair and rehabilitation of bridge structures

机译:碳纤维/聚合物复合材料与钢构件的粘合连接以修复和修复桥梁结构的研究进展

摘要

Generally, it is relatively easy to obtain a high joint strength with most modern bonding systems if these are cured under ideal factory conditions. However, civil engineering construction joints are cured on site and are required to last the lifetime of the structural member in harsh environmental conditions. This implies that site joints might not be constructed and cured as well as those fabricated in the factory. The paper compares two possible methods for bonding an FRP composite patch/plate to a steel adherend suitable for construction sites. The first method utilises the accepted technique of bonding two dissimilar materials using a two-part cold cure adhesive. The second method employs a pre-impregnated FRP composite plate in conjunction with a compatible film adhesive; these comparisons are undertaken by examining the results of double-strap butt joint tests. A possible site technique using the pre-impregnated FRP composite to upgrade a steel beam whilst it is under a low frequency vibration load is investigated; this represents the repair of a steel bridge constantly under traversing traffic. The butt joint test results show that on average, the pre-impregnated composite in conjunction with the film adhesive leads to a failure load which is 15% higher than that of the cold setting adhesive technique. The results of the rehabilitated beam tests show that the bonded joint between the pre-impregnated CFRP composite and the steel adherend did not suffer any significant damage from the low frequency vibrations imposed upon the steel beam during the cure period.
机译:通常,如果将大多数现代粘合系统在理想的工厂条件下固化,则相对容易获得较高的粘合强度。但是,土木工程施工缝是在现场固化的,需要在恶劣的环境条件下使结构构件的使用寿命持久。这意味着现场接头可能无法像工厂制造的那样被建造和固化。本文比较了两种将FRP复合贴片/板粘结到适合建筑工地的钢粘附体上的可能方法。第一种方法利用公认的技术,使用两部分的冷固化粘合剂将两种不同的材料粘合在一起。第二种方法是将预浸渍的FRP复合板与相容的薄膜粘合剂结合使用。这些比较是通过检查双皮带对接试验的结果进行的。研究了一种可能的现场技术,该技术使用预浸渍的FRP复合材料在低频振动载荷下升级钢梁;这代表着不断穿越的交通情况下对钢桥的修复。对接测试结果表明,平均而言,预浸渍的复合材料与薄膜胶粘剂的结合导致的失效载荷比冷固胶技术高15%。修复后的梁测试结果表明,预浸渍CFRP复合材料与钢被粘物之间的粘结接缝在固化期间不会受到施加在钢梁上的低频振动的任何明显损害。

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