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Experimental study on seismic behaviour of cover-plate joints in high strength steel frames

机译:高强度钢框架盖板接头抗震性能的实验研究

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Improved configurations of beam-to-column joints are required to avoid brittle fractures in earthquakes in the design of high strength steel frames, and the cover-plate beam-to-column joints are expected to be effective to reinforce the welded flange-bolted web joints with negligible additional requirements for construction space and have potential for applications in seismic design of high strength steel frames. A total of 6 specimens of high strength steel double-sided cover-plate beam-to-column joints, considering three different combinations of 345 MPa or 460 MPa steel beams and 460 MPa or 730 MPa steel columns, were designed according to the Chinese code and tested subjected to cyclic loads with axial compressions in columns in consideration. The failure modes, the resistance, the stiffness and the ductility of the specimens were analyzed, and the influences of the panel zone thickness, cover-plate length, attached fillet weld in web connection and shape of the weld access whole were evaluated. According to the test results, continuity plates with sufficient thickness in high strength steel cover-plate joints were necessary to avoid unexpected failure modes, and the panel zone shear rotation would make a considerable contribution to the total story drift angle and the plastic story drift angle of the high strength steel frames. All the 6 specimens reach a story drift angle larger than 0.035 rad with 4 of them larger than 0.04 rad, indicating that the high strength steel cover-plate joint may develop considerable ductility. However, the evaluation methods of joint ductility in high strength steel frames should be further discussed because of the significantly increased elastic deformability of high strength steel members. Based on the test results, design recommendations were proposed for high strength steel cover-plate beam-to-column joints.
机译:需要改进的梁到柱接头的配置来避免在高强度钢框架设计中地震中的脆性骨折,并且预计盖板到柱接头将有效地加强焊接的法兰螺栓网施工空间的额外要求可忽略不计的关节,具有高强度钢框架的地震设计中的应用。总共6个高强度钢双面盖板束柱接头,考虑到345 MPa或460 MPa钢梁和460MPa或730 MPa钢柱的三种不同组合,根据中国代码设计并考虑在列中具有轴向压缩的循环负载的测试。分析了试样的失效模式,电阻,刚度和延展性,并评估了面板区厚度,盖板长度,附着在焊接接近的焊接接近的圆角焊缝的影响。根据测试结果,需要在高强度钢盖板接头中具有足够厚度的连续板,以避免意外的故障模式,并且面板区域剪切旋转将对总故事漂移角和塑料故事漂移角度产生相当大的贡献高强度钢框架。所有6标本达到大于0.035伏的故事漂移角,其中4个大于0.04弧,表明高强度钢盖板接头可能产生相当大的延展性。然而,由于高强度钢构件的弹性可变形性显着提高,应进一步讨论高强度钢框架中的关节延展性评价方法。基于测试结果,提出了为高强度钢盖板梁与柱关节的设计建议。

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