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Structural behaviour of stainless steel beam-to-tubular column joints

机译:不锈钢梁对管柱节点的结构性能

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This paper complements previous research conducted by the authors on stainless steel bolted joints and reports the first systematic study on the structural behaviour of stainless steel beam-to-tubular column joints with the use of Hollo-bolts. Six full scale specimens including two flush plate joints, two top and seat cleat connections, and two top, seat and web cleat connections of single-sided beam-to- hollow section column joints have been tested and the results are reported in detail. All specimens were in Grade EN 1.4301 austenitic stainless steel and were designed in such a way that a variety of failure modes could be obtained including plastification of the tubular column face, of the connecting angle cleats or the flush plates. For each specimen the moment-rotation response, the evolution of strains in critical locations of the connections and the separation between the column face and the connected beam was monitored and is reported herein. In parallel with the tests, advanced nonlinear FE models were developed. Following validation against the obtained experimental results, parametric studies were conducted to study the effect of key parameters such as, material grade, column face thickness, end plate/angle cleat thickness and bolt spacing on the stiffness, strength and ductility of the joints. Based on both the experimental and numerical results, it was verified that the connections displayed excellent ductility and attained loads much higher than the ones predicted by design standards for carbon steel joints.
机译:本文是对作者先前对不锈钢螺栓连接进行的研究的补充,并报道了使用Hollo-bolt对不锈钢梁对管状柱接头的结构性能进行的首次系统研究。对六个全尺寸试样进行了测试,包括两个平齐的平板接头,两个顶部和阀座防滑钉连接以及单侧梁到空心截面柱接头的两个顶部,座椅和腹板防滑钉连接,并详细报告了结果。所有标本均采用EN 1.4301级奥氏体不锈钢制成,并且设计方式使得可以获得多种破坏模式,包括管形柱面的增塑,连接角夹板或冲洗板的增塑。对于每个样本,监测并报告了力矩旋转响应,连接关键位置处的应变演变以及柱面与连接梁之间的间距。与测试并行,开发了高级非线性有限元模型。在针对获得的实验结果进行验证之后,进行了参数研究,以研究关键参数(例如材料等级,柱面厚度,端板/角夹板厚度和螺栓间距)对接头刚度,强度和延性的影响。根据实验和数值结果,可以证明这些连接件具有出色的延展性,并且获得的载荷远高于碳钢接头设计标准所预测的载荷。

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