Parvin Azadeh, Raad Janet
Department of Civil and Environmental Engineering, The University of Toledo, Toledo, OH 43606, USA.
Polymers (Basel). 2018 Mar 28;10(4):376. doi: 10.3390/polym10040376.
This paper presents a review of recent studies on reinforced concrete (RC) structural components, such as beam-column joints (BCJs). These members are internally or externally reinforced with corrosion free shape memory alloy (SMA), fiber reinforced polymers (FRP), or a combination of the two materials. Bonded FRP sheets or near surface mounted (NSM) FRP bars are used in external strengthening cases. The use of FRP and SMA materials in RC structures can offer great potential benefits including lifetime cost saving, durability, safety, and post-earthquake serviceability for RC structures. Although FRP materials are well known for their corrosion resistance, high strength-to-weight ratios, ease of application, and constructability; SMA materials as reinforcement allow the structures to regain their original shape after the termination of the load without any permanent large residual deformation. In summary, the presented literature review provides an insight into the ongoing research on the use of these materials for retrofitting or strengthening of RC structural components and the trends for future research in this area. The cost and durability are also discussed.
本文综述了近期关于钢筋混凝土(RC)结构构件的研究,如梁柱节点(BCJ)。这些构件通过无腐蚀形状记忆合金(SMA)、纤维增强聚合物(FRP)或这两种材料的组合进行内部或外部增强。在外部加固情况下,使用粘贴FRP板或近表面安装(NSM)FRP筋。在RC结构中使用FRP和SMA材料可带来巨大潜在益处,包括节省RC结构的生命周期成本、提高耐久性、安全性以及震后适用性。尽管FRP材料以其耐腐蚀、高强度重量比、易于应用和可施工性而闻名;SMA材料作为增强材料可使结构在荷载终止后恢复其原始形状,而不会产生任何永久性的大残余变形。总之,所呈现的文献综述深入探讨了目前在使用这些材料对RC结构构件进行改造或加固方面的研究,以及该领域未来的研究趋势。同时还讨论了成本和耐久性。