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Numerical study on the rotation capacity of CFRP strengthened cold formed steel beams

机译:CFRP强化冷成型钢梁旋转容量的数值研究

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Currently, CFRP (Carbon Fiber Reinforced Polymer) plate bonding is used quite extensively as a strengthening method. In this technique, a composite CFRP plate or sheet of relatively small thickness is bonded with an adhesion material to steel or concrete structure in order to improve its structural behavior and strength. The sheets or plates do not require much space and give a composite action between the adherents. In this study, the rotation capacity of CFRP-strengthened cold-formed steel (CFS) beams has been evaluated through numerical investigation. Studies on different structural levels have been performed. At the beam level, C-section has been adopted with different values of profile thickness, web height, and flange width. At the connection level, a web bolted moment resistant type of connection using through plate has been adopted. In web-bolted connections without CFRP strengthening, premature web buckling results in early loss of strength. Hence, CFRP sheets and plates with different mechanical properties and geometric configurations have been examined to delay web and flange buckling and to produce relatively high moment strength and rotation capacity. The numerical results reveal that CFRP strengthening may increase strength, initial stiffness, and rotation capacity when compared with the case without strengthening.
机译:目前,CFRP(碳纤维增强聚合物)板键合非常广泛地用作强化方法。在该技术中,复合CFRP板或相对小的厚度的片材与粘附材料粘合到钢或混凝土结构中,以提高其结构行为和强度。片材或板不需要太大的空间并在追随者之间提供复合动作。在该研究中,通过数值研究评估了CFRP加强的冷成型钢(CFS)光束的旋转容量。已经进行了对不同结构水平的研究。在光束级别,C型部分已采用不同的轮廓厚度,幅材高度和法兰宽度。在连接水平处,采用了通过板的网螺栓力矩抗性连接类型。在没有CFRP强化的网络螺栓连接中,早产的腹部屈曲导致早期的强度损失。因此,已经研究了具有不同机械性能和几何构造的CFRP片材和板,以延迟幅材和法兰屈曲并产生相对较高的力矩强度和旋转容量。数字结果表明,与无需强化的情况相比,CFRP强化可能会增加强度,初始刚度和旋转容量。

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