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Experimental Evaluation of the Shear Resistance of Corrugated Perf obond Rib Shear Connections

机译:波纹肋肋肋剪连接的抗剪强度的实验评估

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Push-out tests were carried out to examine the shear strength of corrugated perfobond rib shear connections. The corrugated perfobond rib shear connection, formed by folding the straight perfobond rib steel panel, can be expected to increase the shear capacity and ductility of a shear connector due to the shear resistance and deformation of the inclined rib panel. To examine the shear behaviour of the corrugated perfobond rib connection and compare it with that of the perfobond rib, the push-out specimens were fabricated to suit the shear corrugated rib resistance parameters of depth of rib, height of rib, holes in the corrugated rib and whether transverse rebar is placed in the corrugated rib holes. Results of the push-outs show that the failure of corrugated perfobond rib shear connection is determined by concrete bearing and small deformations of inclined perfobond rib panel. Specifically, the corrugated rib specimens showed different relative slips at each side of the composite interface owing to the stress flow along the inclined rib developed by inclined direction of the welded corrugated perfobond rib. The transverse rebar in the rib hole reduced the difference in relative slips. The shear strength of the corrugated connection is increased by about 198-512% compared with the standard perfobond rib specimen connection with transverse rebars and without transverse rebars respectively. However, the contribution of other shear resistance parameters is found to be relatively small compared with the contribution provided by transverse rebars in the rib holes. In terms of the ductility of the shear connector, the relative slip of the corrugated rib connections increased after ultimate load, so it is evaluated to have a sufficient ductility.
机译:进行了推出试验,以检查波纹全氟碳纤维肋骨剪切连接的剪切强度。由于倾斜的肋板的抗剪切力和变形,通过折叠直的全肋肋钢板形成的波纹全肋肋剪力连接件有望提高剪切连接器的剪切能力和延展性。为了检查波纹全肋筋连接处的剪切性能并将其与全肋筋进行比较,制作了推力试样以适应剪切肋的阻力参数,包括肋深,肋高,波纹肋中的孔是否将横向钢筋放置在波纹肋孔中。推出结果表明,波纹全肋肋板剪切连接的失效是由混凝土支座和倾斜的全肋肋板的小变形决定的。具体地说,由于沿波纹肋的倾斜方向产生的应力流沿着倾斜肋产生的应力流,波纹肋样品在复合材料界面的每一侧显示出不同的相对滑动。肋孔中的横向钢筋减少了相对滑移的差异。与带有横向钢筋和不带横向钢筋的标准全氟筋肋试样连接相比,波纹连接的抗剪强度提高了约198-512%。但是,发现其他抗剪强度参数的贡献与肋孔中横向钢筋的贡献相比较小。就剪切连接器的延展性而言,波纹肋连接的相对滑动在极限载荷之后增加,因此评估为具有足够的延展性。

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