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首页> 外文期刊>Revista IBRACON de Estruturas e Materiais >Flexural strengthening of reinforced concrete beams with carbon fibers reinforced polymer (CFRP) sheet bonded to a transition layer of high performance cement-based composite
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Flexural strengthening of reinforced concrete beams with carbon fibers reinforced polymer (CFRP) sheet bonded to a transition layer of high performance cement-based composite

机译:用碳纤维增强聚合物(CFRP)薄板粘结到高性能水泥基复合材料的过渡层上来对钢筋混凝土梁进行抗弯加固

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摘要

Resistance to corrosion, high tensile strength, low weight, easiness and rapidity of application, are characteristics that have contributed to the spread of the strengthening technique characterized by bonding of carbon fibers reinforced polymer (CFRP). This research aimed to develop an innovate strengthening method for RC beams, based on a high performance cement-based composite of steel fibers (macro + microfibers) to be applied as a transition layer. The purpose of this transition layer is better control the cracking of concrete and detain or even avoid premature debonding of strengthening. A preliminary study in short beams molded with steel fibers and strengthened with CFRP sheet, was carried out where was verified that the conception of the transition layer is valid. Tests were developed to get a cement-based composite with adequate characteristics to constitute the layer transition. Results showed the possibility to develop a high performance material with a pseudo strain-hardening behavior, high strength and fracture toughness. The application of the strengthening on the transition layer surface had significantly to improve the performance levels of the strengthened beam. It summary, it was proven the efficiency of the new strengthening technique, and much information can be used as criteria of projects for repaired and strengthened structures.
机译:耐腐蚀,高抗张强度,低重量,易于使用和快速使用等特性是促进以碳纤维增强聚合物(CFRP)粘合为特征的强化技术的特征。这项研究旨在开发一种创新的RC梁加固方法,该方法基于高性能水泥基钢纤维(宏+微纤维)复合材料作为过渡层。该过渡层的目的是更好地控制混凝土的开裂,并保留甚至避免过早地将钢筋松脱。对钢纤维模压并用CFRP片加固的短梁进行了初步研究,证实了过渡层的概念是正确的。开发测试以得到具有足够特性以构成层过渡的水泥基复合材料。结果表明开发具有假应变硬化行为,高强度和断裂韧性的高性能材料的可能性。在过渡层表面上进行加固必须显着提高加固梁的性能水平。综上所述,已证明了新加固技术的有效性,许多信息可以用作修复和加固结构项目的标准。

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