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INTERACTING THREATS MITIGATED: CARBON COMPOSITE SYSTEM'S ABILITY TO RESTORE/INCREASE PIPELINE STRENGTH

机译:缓解的交互威胁:碳复合系统恢复/增加管道强度的能力

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Fiber Reinforced Polymers (FRPs), a qualified structural building material for several industries, have recently demonstrated additional validation in pressure pipeline applications. With validated durability's of their own, glass and carbon fiber reinforced polymers (GFRP and CFRP) have demonstrated significant ability to prevent and arrest corrosion in steel and concrete applications while increasing/renewing structural capacities of corroding elements. Although other coatings prevent deterioration of ferrous materials, CFRP and GRFP applications can reinforce and/or effectively replace the pipeline using the existing pipe as a composite form. GFRP and CFRP applications have proven ability in external applications of dented and artificially corroded pressure pipelines with interacting threats of girth and seam welds. The repair systems received cyclic loading up to 72% of the specified minimum yield strength and tested beyond 100,000 and 370,000 pressure cycles without failure for dents and simulated corrosion, respectively. This paper will provide a quick overview of relevant testing on GFRP and CFRP application for corrosion mitigation/rehabilitation with more detail on the recent validation of FRP applications for dented and corroded pressure pipes.
机译:纤维增强聚合物(FRP)是几种行业的合格结构建筑材料,最近在压力管道应用中证明了其附加的有效性。玻璃纤维和碳纤维增强聚合物(GFRP和CFRP)具有经过验证的耐用性,在增加和更新腐蚀元件的结构能力的同时,还具有防止和阻止钢铁和混凝土应用中腐蚀的显着能力。尽管其他涂层可防止铁质材料变质,但CFRP和GRFP的应用可以使用现有管道作为复合材料形式来增强和/或有效地替换管道。 GFRP和CFRP的应用已证明能够在凹痕和人为腐蚀的压力管道的外部应用中发挥作用,并具有环缝和缝焊的相互威胁。修复系统承受的循环载荷高达规定的最小屈服强度的72%,并经过100,000次和370,000次压力循环测试,分别没有凹痕和模拟腐蚀。本文将简要介绍有关GFRP和CFRP在缓解腐蚀/修复方面的应用的相关测试,并更详细地介绍最近在凹陷和腐蚀的压力管道中FRP应用的验证。

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