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Experimental work on cold-formed steel elements for earthquake resilient moment frame buildings

机译:抗震矩框架建筑物冷弯型钢构件的试验工作

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摘要

This paper presents an experimental investigation on the use of thin-walled cold-formed steel (CFS) sections as energy dissipative elements for earthquake resistant moment frame multi-storey buildings. The tests were performed on six bolted beam-to-column connections, using through plates and curved flange beams with different types of out-of-plane stiffeners in the connection region. The hysteretic behaviour of the CFS connections shows high seismic energy dissipation capacity and sufficient ductility to satisfy code requirements for seismic design. The use of out-of-plane stiffeners inside the beams in the connection region results in improvement of the moment-rotation behaviour of the connection by up to 35% in strength and 75% in ductility. Mobilising connection slip after the elastic cycles provides highly stable hysteretic behaviour and an increase of up to 240% in energy dissipation capacity. The tested connections can be classified as rigid with partial or full strength depending on the connection stiffeners.
机译:本文提出了使用薄壁冷弯型钢(CFS)型材作为抗震矩框架多层建筑的耗能元件的实验研究。该测试是在六个螺栓连接的梁到柱连接上进行的,使用的是在连接区域中具有不同类型的平面外加劲肋的通板和弯曲的法兰梁。 CFS连接的滞后行为显示出高的地震能量消散能力和足够的延展性,以满足地震设计的规范要求。在连接区域中,在梁内部使用平面外加劲肋可提高连接的力矩旋转性能,强度提高35%,延展性提高75%。弹性循环后动员的连接滑移提供了高度稳定的磁滞行为,并增加了高达240%的能量耗散能力。根据连接加强筋的不同,测试的连接可以分为具有部分或全部强度的刚性连接。

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