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Studying the Ductility Factor for Middle Gusset Connections in Chevron Braced Frame Configurations

机译:在雪佛龙支架框架配置中研究中圆盘连接的延展性因子

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Chevron bracing is a common configuration for concentrically braced frames. Typically gusset plates are used to connect the braces to the frame in such braced frames. One of the common issues in brace connections is the uneven stress distribution across the welded gusset edge. The development of a peak stress induced at some point across the welded connection might cause the weld to fail at the point where the stress is concentrated causing an unzipping of the weld and a progressive failure of the welded connection. A weld ductility factor has been used to account for the uneven connection stress distribution. However, the limited experimental work on which the ductility factor is based was performed considering only corner gussets. This study evaluates the ductility factor value for chevron (middle) gusset plate connections. In order to do so, a group of twenty assemblies, each consisting of a beam, rectangular gusset(s) with chavron V- and X-type bracing configuration, and the beam to gusset(s) weld connections are designed, and then modeled in a finite element software to check the stress distribution along the weld line. Based on the obtained results, the common weld ductility factor value should be increased to a larger amount for the case of chevron gusset plate.
机译:雪佛龙支撑是同心支撑框架的常见配置。通常,圆盘板用于将支架连接到这种支撑框架中的框架。支架连接中的一个常见问题是焊接角撑板边缘的不均匀应力分布。在焊接连接的某个点处引起的峰值应力的发展可能导致焊接在应力集中的点处失效,导致焊接的解压缩和焊接连接的渐进式故障。焊接延展因子已被用于考虑不均匀的连接应力分布。然而,考虑到延展性因子的有限实验工作是考虑到角落露点。本研究评估了雪佛龙(中间)角撑板连接的延展性因子值。为了这样做,设计了一组20个组件,每个组装由Chavron V-和X型支撑配置的梁,矩形角撑板和梁到角撑板焊接连接,然后建模在有限元件中以检查沿焊接线的应力分布。基于所得到的结果,对于雪佛龙角板的情况,应增加普通的焊接延展性因子值。

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