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Shear Behavior of Reinforced Concrete Beams Strengthened by Epoxy Mortar Panel with Steel Fibers

机译:钢纤维环氧砂浆板加固钢筋混凝土梁的受剪性能

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摘要

The purpose of this study was to develop a new strengthening material that increases the shear strength and improves the deformation capacity of reinforced concrete (RC) beam members. A new composite material named epoxy mortar with steel fiber (EMSF) was prepared by inserting steel fibers into an epoxy mortar to provide the new strengthening material with high strength-toughness characteristics. In this study, materials and structural tests were employed. The materials tests assessed the influence of the volume percentage and the length of steel fiber on the tensile strength and toughness capacity of the composite material, EMSF. The structural tests help determine the influence of the EMSF panel type and thickness on the shear capacity and shear failure mode of strengthened RC beam members. The results of the two test groups are summarized as follows: 1) the results from the material tests indicated that the EMSF panel with 35 mm steel fibers exhibited high tensile strength, and the EMSF panel with both 35 mm and 50 mm steel fibers showed good toughness capacity; 2) the RC beam strengthened by an EMSF panel with short (35 mm) fibers possessed the highest shear strength, 3) the RC beam strengthened by an EMSF panel with both short (35 mm) and long (50 mm) fibers exhibited improved deformation capacity; and 4) a shear strength equation was derived from the equilibrium of the cracked RC beam members and is in good agreement with the test results.
机译:这项研究的目的是开发一种新的增强材料,该材料可以提高抗剪强度并改善钢筋混凝土(RC)梁构件的变形能力。通过将钢纤维插入环氧砂浆中,制备了一种新型复合材料,称为钢纤维环氧砂浆(EMSF),以提供具有高强度-韧性特性的新型增强材料。在这项研究中,采用了材料和结构测试。材料测试评估了钢纤维的体积百分比和长度对复合材料EMSF的拉伸强度和韧性的影响。结构测试有助于确定EMSF面板类型和厚度对加固RC梁构件的抗剪承载力和抗剪破坏模式的影响。两个测试组的结果总结如下:1)材料测试的结果表明,使用35 mm钢纤维的EMSF面板显示出高拉伸强度,同时使用35 mm和50 mm钢纤维的EMSF面板显示出良好的拉伸强度。韧性能力2)用短纤维(35 mm)的EMSF面板加强的RC梁具有最高的抗剪强度,3)用短纤维(35 mm)和长(50 mm)的EMSF面板加强的RC梁表现出改善的变形容量; 4)从开裂的RC梁构件的平衡推导了抗剪强度方程,该方程与试验结果吻合良好。

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