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首页> 外文期刊>Journal of Constructional Steel Research >Experimental research and cyclic behavior of buckling-restrained braced composite frame
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Experimental research and cyclic behavior of buckling-restrained braced composite frame

机译:屈曲约束支撑组合框架的试验研究及循环特性

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The pseudo-static tests (PSTs) of one 1/3 scale 2-story 1-bay buckling-restrained braced composite frame (BRBCF) system consisting of concrete-filled circular hollow section (CHS) steel columns, steel beams and BRBs were tested in Harbin Institute of Technology, a same bare composite frame (CF) was tested to compare with BRBCF. The test BRBCF exhibited excellent performance and sustained no strength or stiffness degradation during the significant drift demands imposed by the subsequent quasi-static cyclic test, which possessed good ductility and energy dissipation capacity. Compared with CF system, the stiffness, load-bearing capacity and energy dissipation capacity of BRBCF system increased evidently. The welded splices beam-column-BRB connections are cheap joints and are convenient to install BRBs in construction site, the experiment demonstrated their ability to withstand major ductility demands. The BRBs didn't show global buckling, local buckling and fracture of inner cores. Test also found the damage in beam-column-BRB connections region, including fractures of the gusset and beam welds, local buckling of flanges and webs of beams and enforced loops due to frame and brace action forces, which should be considered in the design of BRBCF. For frames using the proposed gusset connection, the maximum frame drift prior to failure will be governed by the rotational capacity of the beam-to-column connection, not the axial deformation of the BRB. The fracture and buckle of CHS steel tubes at the first story base indicated the thickness of CHS steel tube of composite columns in BRBCF should be enlarged to avoid the early failure of composite columns.
机译:测试了一个1/3比例的2层1层1排架屈曲约束支撑复合框架(BRBCF)系统的拟静力试验(PST),该系统由实心圆形空心截面(CHS)钢柱,钢梁和BRB组成在哈尔滨工业大学,对相同的裸复合框架(CF)进行了测试,以与BRBCF进行比较。测试BRBCF在随后的准静态循环测试提出的显着漂移要求期间表现出出色的性能,并且没有持续的强度或刚度降低,具有良好的延展性和能量消散能力。与CF系统相比,BRBCF系统的刚度,承载能力和消能能力明显提高。焊接接头的梁柱-BRB连接是便宜的接头,在施工现场安装BRB十分方便,实验证明了它们能够承受主要的延性要求。 BRB没有显示整体屈曲,局部屈曲和内芯破裂。测试还发现梁-BRB-BRB连接区域的损坏,包括角撑板和梁焊缝的断裂,法兰和梁腹板的局部屈曲以及由于框架和支撑作用力引起的强制环,在设计时应考虑这些因素。 BRBCF。对于使用建议的角撑板连接的框架,失效之前的最大框架漂移将由梁到柱连接的旋转能力而不是BRB的轴向变形决定。第一层基础上的CHS钢管的断裂和弯曲表明,BRBCF中复合柱的CHS钢管的厚度应加大,以避免复合柱的早期破坏。

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