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Development of cold-formed steel moment-resisting connections with bolting friction-slip mechanism for seismic applications

机译:具有用于地震应用的螺栓摩擦滑移机构的冷成型钢力矩抵抗机构的研制

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This paper presents an investigation into a friction-slip mechanism in bolted joints in cold-formed steel (CFS) moment-resisting connections suitable for seismic areas. The aim is to achieve higher ductility and energy dissipation capacity through an appropriately designed bolted connection, enabling activation of bolt slip, acting as a fuse mechanism, postponing the initiation of non-ductile local buckling in the CFS beams. By means of validated finite element analysis (FEA), both monotonic and cyclic performance of CFS connections comprising two types of square (SB) and circular (CB) bolt group arrangements, with four types of beam sections, are studied comparatively without and with slip at various levels. It is shown that the connections with slip provide higher energy dissipation capacity by up to 75% compared with that of the connections without slip. A design approach to predict an appropriate level for the connection slip moments to be initiated before the beam buckling moment is introduced using the direct strength method (DSM). On comparing the bolt forces obtained for the SB and CB groups, the CB connections produce a more uniform bolt-group force distribution which is closer to the idealised method; while the SB connection encounter a significant delay of up to 30% in activation of bolt group slip which could lead to unfavourable beam local buckling. Furthermore, to avoid an unfavourable hardening effect due to the bolts bearing action, slotted holes are used with a recommended length obtained for the cyclic movements of the bolts in the range of the designed connections. The instantaneous centre of rotation results show that the connections with slip have less deviation from the idealised centre of rotation than the connections without slip.
机译:本文介绍了适用于地震区域的冷成型钢(CFS)力矩抵抗连接中螺栓接头中摩擦滑动机制的研究。目的是通过适当设计的螺栓连接实现更高的延展性和能量耗散能力,从而能够激活螺栓滑动,作为熔断器机构,推迟了CFS梁中的非延展性局部屈曲的启动。通过验证的有限元分析(FEA),CFS连接的单调和循环性能,包括两种类型的方形(Sb)和圆形(CB)螺栓组装置,具有四种类型的光束部分,无需和滑动在各个层面。结果表明,与没有滑动的连接相比,与滑移的连接可提供高达75%的能量耗散量。使用直接强度法(DSM)引入在光束屈曲力矩之前预测连接滑动矩的适当水平的设计方法。在比较Sb和Cb基团获得的螺栓力的情况下,Cb连接产生更均匀的螺栓基力分布,其更接近理想化方法;虽然SB连接遇到螺栓组滑动激活的显着延迟高达30%,但可能导致局部屈曲不利的束缚。此外,为了避免由于螺栓承载作用引起的不利的硬化效果,开槽孔用于为设计连接范围内的螺栓的循环运动而获得的推荐长度。瞬时旋转结果结果表明,与光滑的理想旋转中心的连接差的连接较差比没有滑动的连接。

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