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Behavior of cracked steel plates strengthened with adhesively bonded CFRP laminates under fatigue Loading: Experimental and analytical study

机译:疲劳载荷下粘结CFRP层压板加强裂纹钢板的行为:实验和分析研究

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The strengthening of steel structures using externally bonded (EB) carbon fiber-reinforced polymer (CFRP) laminates has gained popularity due to the advantages such as their high strength-to-weight ratio and corrosion resistance. Even though previous studies showed the application of EB CFRP laminates can enhance the fatigue performance of cracked steel plates, little is known regarding the high-cycle fatigue performance of CFRP-tosteel bonded joints. As debonding of the CFRP laminate from the steel substrate is a commonly observed failure mode under fatigue loading, a sound understanding of the behavior of CFRP-to-steel bonded joints is crucial for a better understanding of the behavior of CFRP-strengthened cracked steel plates under fatigue loading. This study experimentally and theoretically investigates the fatigue performance of CFRP-strengthened cracked steel plates. Five pre-cracked steel plates were strengthened with CFRP laminates and tested under fatigue loading. The test results for the failure modes, the fatigue-life extension, and the behavior of the CFRP-to-steel bonded joint were discussed. A numerical modeling approach based on a recently developed bond-slip model for the behavior of the CFRP-to-steel bonded interface under fatigue loading is presented for modeling the behavior of the CFRP-strengthened cracked steel plate. Although the proposed theoretical model is conservative, this method accurately predicted the remaining fatigue life of CFRP-strengthened cracked steel plates.
机译:使用外部键合(EB)碳纤维增强聚合物(CFRP)层压材料的钢结构的加强由于它们的高强度重量比和耐腐蚀性等优点而受到普及。尽管先前的研究表明,EB CFRP层压板的应用可以提高裂纹钢板的疲劳性能,但关于CFRP-Tosteel键合接头的高循环疲劳性能很少。由于剥离来自钢基材的CFRP层压材料是疲劳负载下的常见失效模式,因此对CFRP-钢结构接头的行为的声音理解对于更好地了解CFRP加强的裂纹钢板的行为至关重要在疲劳载荷下。本研究实验和理论上研究了CFRP加强裂纹钢板的疲劳性能。用CFRP层压材料加强五个预裂纹钢板,并在疲劳负载下进行测试。讨论了失效模式,疲劳 - 寿命延伸和CFRP-钢结构接头的行为的测试结果。提出了一种基于最近开发的钢筋合界面行为的最近开发的粘合模型的数值建模方法,用于建模CFRP加强裂缝钢板的行为。虽然所提出的理论模型是保守的,但这种方法准确地预测了CFRP加强裂纹钢板的剩余疲劳寿命。

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