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Rehabilitation of tubular members with carbon reinforced polymers

机译:用碳增强聚合物的管状构件康复

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Tubular structures have become increasingly popular for steel and aluminium construction, for economic and aesthetic reasons, yet member deterioration and fatigue-cracking of connections is often reported in the offshore industry, in the transportation and agricultural sectors, and with amusement rides. The suitability of such materials to rehabilitate tubular steel members and the structural behaviour of the resulting composite system were investigated experimentally. The programme was tailored primarily to the offshore industry and techniques associated with underwater repair methods. Employing a wet-layup application method, the main focus was on the static flexural performance of steel-FRP composite beams, with principal experimental parameters being the fibre and epoxy material types and the matrix curing conditions. Curing of the specimens was performed both in air and in seawater, the latter simulating the condition for underwater application to offshore structures. The strengthening process was effective as all wrapped composite members exhibited improved structural performance compared to that of a bare tube. The current study has proven the feasibility of rehabilitating tubular steel members with advanced composite materials, underwater.
机译:对于经济和美学的原因,管状结构已经越来越受钢和铝建筑流行的流行,但成员在海上行业中报告了联系的成员恶化和疲劳开裂,在运输和农业部门以及娱乐场所。实验研究了这种材料来恢复管状钢构件和所得复合系统的结构行为的适用性。该计划主要针对海上工业和与水下修复方法相关的技术量身定制。采用湿式敷设应用方法,主要重点是钢-FRP复合梁的静态弯曲性能,主要实验参数是纤维和环氧材料类型和基质固化条件。样品的固化是在空气和海水中进行的,后者模拟水下应用到海上结构的条件。随着所有包装的复合构件与裸管相比表现出改善的结构性能,加强过程是有效的。目前的研究证明了恢复管状钢构件的可行性,用先进的复合材料,水下。

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