纤维增强聚合物钢筋加筋混凝土构件强度的试验研究

V. Stepanova, T. Mukhamediev, K. Kudyakov, A. Buchkin, E. Yurin
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摘要

介绍。受各种恶劣环境影响的钢筋混凝土结构在偏心受压下运行。纤维增强聚合物(FRP)钢筋在这些结构中取代钢筋能够提高其耐久性并降低运营成本。然而,FRP筋的使用受到先前对此类结构设计方法的研究不足的限制。国际上大多数关于FRP筋混凝土结构设计的规范性技术文件都指出,有必要对这些结构在压缩作用下的应力-应变状态进行详细研究。研究纵向配筋和纵向配筋对纵向玻璃纤维增强聚合物(GFRP)配筋受压混凝土试件承载特性的影响。材料和方法。采用不同纵、剪配筋参数的混凝土棱柱试件进行研究。考虑了五种GFRP筋在力学性能和锚固性能上的差异。用不同节距的金属钳对试样进行剪切加固。采用静压中心压缩法对样品进行了测试。得到了GFRP筋加筋压缩混凝土试样的强度值。与未加筋的样品相比,用GFRP筋加固的压缩混凝土样品的强度增加了19%。当用玻璃纤维增强聚合物钢筋加固时,压缩混凝土构件的强度增加。这种构件的强度增加程度取决于纵向钢筋的数量,以及剪切钢筋间距。GFRP筋的锚固形式及其抗压强度对受压混凝土构件强度的影响尚未确定。
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Experimental studies into the strength of compressed concrete elements reinforced with fiber-reinforced polymer rebars
Introduction. Reinforced concrete structures affected by various aggressive environments operate under off-center compression. Fiber-reinforced polymer (FRP) rebars replacing steel reinforcement in these structures are capable of increasing their durability and decreasing operating costs. However, the use of FRP rebars is limited by insufficient previous research into the methods of designing such constructions. The majority of international regulatory technical documents concerning the design of concrete structures reinforced with FRP rebars indicate the necessity of detailed studies into the stress-strain state of these structures under compression.Aim. To study the effect of longitude and shear reinforcement on load-bearing characteristic of stressed concrete samples reinforced with longitudinal glass fiber-reinforced polymer (GFRP) rebars.Materials and methods. The study was carried out using a concrete prism sample with different parameters of longitudinal and shear reinforcement. Five types of GFRP rebars differing in mechanical properties, as well as anchorage were considered. Shear reinforcement of the samples was performed with metal clamps at different pitches. The sample testing was fulfilled using centric compression with static load.Results. The strength values of compressed concrete samples reinforced with GFRP rebars were obtained. An increase of up to 19 % in the strength of compressed concrete samples reinforced with GFRP rebars was found in comparison with non-reinforced samples.Conclusions. The strength of compressed concrete elements increases when reinforced with glass fiber-reinforced polymer rebars. The degree of increase in the strength of such elements depends on the number of longitudinal reinforcements, as well as shear reinforcement pitch. The effect of the type of anchorage of GFRP rebars along with the values of its compression resistance on the strength of compressed concrete elements have not been established. 
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