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Análise numérica de vigas de concreto armado reforçadas por compósitos formados por fibras de alta resistência e argamassa de cimento

机译:高强纤维与水泥砂浆复合材料增强钢筋混凝土梁的数值分析

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摘要

The use of composite materials based on polymeric resins and fiber as strengthening in concrete structures has been widely used. The use of carbon fiber reinforced polymers or other synthetic fibers is consolidated by its excellent characteristics, such as high strength, low weight, corrosion resistance, etc. This material in the form of sheets or laminates is bonded to the concrete substrate with epoxy-based adhesives. Although epoxy has proven to have excellent bonding and resistance performance, it has some disadvantages, such as low permeability, poor thermal compatibility with the base concrete, poor fire resistance, etc. Cement-based composite systems consisting of FRPs and a cementitious bonding agent can be used to prevent some of these problems. This study presents the numerical analysis, using a non-linear finite element model, of the structural behavior of reinforced concrete beams externally reinforced with a composite material made of high-strength synthetic fiber mesh and cementitious mortar. The numerical results were compared with experimental results reported in international journals, demonstrating the efficiency of the strengthening technique and the numerical model capacity.
机译:基于聚合物树脂和纤维的复合材料作为混凝土结构中的增强材料已被广泛使用。碳纤维增强聚合物或其他合成纤维的使用因其优异的特性而得到巩固,例如高强度,低重量,耐腐蚀等。这种材料以片状或层压板的形式通过环氧树脂基粘结到混凝土基材上胶粘剂。尽管已证明环氧树脂具有出色的粘结和抗粘性能,但它具有一些缺点,例如渗透性低,与基础混凝土的热相容性差,耐火性差等。由FRP和水泥粘结剂组成的水泥基复合体系可以用于防止其中一些问题。本研究使用非线性有限元模型,对用高强度合成纤维网和水泥砂浆制成的复合材料对外加固的钢筋混凝土梁的结构性能进行数值分析。将数值结果与国际期刊上报道的实验结果进行了比较,证明了强化技术的有效性和数值模型的能力。

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