Parvin Azadeh, Syed Shah Taqiuddin
The University of Toledo, Toledo, OH 43606, USA.
Polymers (Basel). 2016 Aug 11;8(8):298. doi: 10.3390/polym8080298.
This paper provides a critical review of recent studies on strengthening of reinforced concrete and unreinforced masonry (URM) structures by fiber reinforced polymers (FRP) through near-surface mounting (NSM) method. The use of NSM-FRP has been on the rise, mainly due to composite materials' high strength and stiffness, non-corrosive nature and ease of installation. Experimental investigations presented in this review have confirmed the benefits associated with NSM-FRP for flexural and shear strengthening of RC and URM structures. The use of prestressing and anchorage systems to further improve NSM-FRP strain utilization and changes in failure modes has also been presented. Bond behavior of NSM-FRP-concrete or masonry interface, which is a key factor in increasing the load capacity of RC and URM structures has been briefly explored. Presented studies related to the effect of temperature on the bond performance of NSM-FRP strengthened systems with various insulations and adhesive types, show better performance than externally bonded reinforcement (EBR) FRP retrofitting. In summary, the presented literature review provides an insight into the ongoing research on the use of NSM-FRP for strengthening of structural members and the trends for future research in this area.
本文对近期关于通过纤维增强聚合物(FRP)采用近表面粘贴(NSM)方法对钢筋混凝土和无筋砌体(URM)结构进行加固的研究进行了批判性综述。NSM-FRP的使用一直在增加,主要是由于复合材料具有高强度、高刚度、无腐蚀性且易于安装。本综述中介绍的试验研究证实了NSM-FRP对钢筋混凝土和无筋砌体结构抗弯和抗剪加固的益处。还介绍了使用预应力和锚固系统来进一步提高NSM-FRP应变利用率以及改变破坏模式的情况。NSM-FRP与混凝土或砌体界面的粘结性能是提高钢筋混凝土和无筋砌体结构承载能力的关键因素,对此进行了简要探讨。所呈现的与温度对采用各种保温材料和胶粘剂类型的NSM-FRP加固系统粘结性能影响相关的研究表明,其性能优于外贴加固(EBR)FRP改造。总之,所呈现的文献综述深入了解了目前关于使用NSM-FRP加固结构构件的研究以及该领域未来的研究趋势。