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Debonding of adhesively bonded composite patch repairs of cracked steel members

机译:破裂的钢构件的粘结复合修补剂的脱胶

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摘要

Rehabilitation of steel bridge members using composite patches is increasingly becoming a popular method for fatigue mitigation. However, the long-term performance of these patches is an issue of considerable concern and the focus of ongoing research. In this paper, the debonding (bond failure) of an adhesively bonded composite reinforcement acting on a steel member is investigated. Two debonding scenarios are considered. In the first, a patched, uncracked, steel plate is examined, while in the second, a steel plate with a crack growing into the thickness direction is considered. For the latter scenario, the influence of debonding on the crack driving force is also investigated. To this end, debonding is modelled here as a crack located at the interface between the steel and the adhesive and the finite element method (FEM) is employed in order to determine the strain energy release rate (G), which is a measure of the interface crack driving force and hence characterises the propensity for fatigue-induced debonding.
机译:使用复合材料补片修复钢桥构件越来越成为减轻疲劳的流行方法。但是,这些修补程序的长期性能是一个值得高度关注的问题,也是当前研究的重点。在本文中,研究了作用在钢构件上的粘合复合增强材料的剥离(粘合破坏)。考虑了两种脱粘方案。第一种方法是检查修补的,未开裂的钢板,第二种方法是考虑在厚度方向上裂纹扩展的钢板。对于后一种情况,还研究了剥离对裂纹驱动力的影响。为此,此处将脱胶建模为位于钢与胶粘剂之间界面的裂纹,并采用有限元方法(FEM)确定应变能释放率(G),这是测量应变能的方法。界面裂纹驱动力,因此表征了疲劳引起的脱胶倾向。

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