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Experimental Investigation on the Strengthening of Reinforced Concrete Beams Using Externally Bonded and Near-Surface Mounted Natural Fibre Reinforced Polymer Composites—A Review

机译:外粘结近表面安装天然纤维增强聚合物复合材料加固钢筋混凝土梁的试验研究——综述

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摘要

Developing more resilient and sustainable physical infrastructure increases the demand for sustainable materials and strengthening approaches. Many investigations into strengthening RC beam structures have used either externally bonded (EB) or near-surface mounted (NSM) systems with synthetic fibre reinforced polymer composites. These synthetic fibres are unsustainable since they involve the use of nonrenewable resources and a large amount of energy. Research shows that natural fibre reinforced polymer (NFRP) composites may be an alternative to synthetic FRP composites in the strengthening of concrete beams. However, there is limited literature that validates their performance in various structural applications. Hence, the purpose of this paper is to explore the advances, prospects, and gaps of using EB/NSM NFRP techniques in strengthening concrete beams to provide areas for future research directions. The NSM FRP technique provides improved strengthening effects and mitigates the concerns associated with the EB system, based on a wider range of applications using synthetic FRPs. However, the NSM NFRP strengthening technique has been underutilized, though the EB NFRP system has been more commonly explored in reviewed studies. The knowledge gaps and areas for proposed future research directions are essential in developing work in emerging NFRPs and strengthening techniques for sustainable infrastructure.
机译:开发更具弹性和可持续性的物理基础设施增加了对可持续材料和强化方法的需求。许多对强化 RC 梁结构的研究都使用了带有合成纤维增强聚合物复合材料的外部粘合 (EB) 或近表面安装 (NSM) 系统。这些合成纤维是不可持续的,因为它们涉及使用不可再生的资源和大量的能源。研究表明,天然纤维增强聚合物 (NFRP) 复合材料可能是合成 FRP 复合材料在加固混凝土梁方面的替代品。然而,验证它们在各种结构应用中性能的文献有限。因此,本文旨在探讨使用 EB/NSM NFRP 技术加固混凝土梁的进展、前景和差距,为未来的研究方向提供领域。NSM FRP 技术基于使用合成 FRP 的更广泛应用,提供了改进的加固效果并减轻了与 EB 系统相关的担忧。然而,尽管 EB NFRP 系统在综述研究中得到了更普遍的探索,但 NSM NFRP 强化技术尚未得到充分利用。拟议的未来研究方向的知识差距和领域对于发展新兴 NFRP 的工作和加强可持续基础设施的技术至关重要。

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