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Experimental investigation of link-to-column connections in eccentrically braced frames

机译:偏心支撑框架中链柱连接的实验研究

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The design of link-to-column connections in seismic-resistant eccentrically braced frames remains a largely unresolved problem. In order to address this problem, twenty-four large-scale specimens were tested under cyclic loading. The test parameters included the connection detail, link length, link section, and cyclic loading protocol. The test results suggest that link-to-column connections are susceptible to fracture at the link flange welds, regardless of the link length. A large number of specimens failed prematurely, before meeting the plastic link rotation requirement in US code provisions. However, two promising link-to-column connection details were developed as an outcome of this research. The new connection details include a detail using all-around fillet welds between the link and the column flange, and a reinforced connection detail that welds a pair of stiffeners in the First link web panel next to the column, parallel to the link web. Test specimens using either of these two details were ablern to exceed the plastic link rotation requirement.
机译:抗震偏心支撑框架中的链柱连接设计在很大程度上仍未解决。为了解决这个问题,在循环载荷下测试了二十四个大型样本。测试参数包括连接详细信息,链接长度,链接部分和循环加载协议。测试结果表明,无论链节长度如何,链节到柱的连接都容易在链节法兰焊接处断裂。在满足美国法规规定的塑料链节旋转要求之前,大量样品过早失效。但是,作为这项研究的结果,开发了两个很有希望的链接到列的连接细节。新的连接详细信息包括在链节和柱法兰之间使用全方位角焊缝的细节,以及在柱旁的第一链节腹板面板中平行于链节腹板的一对加强筋焊接加强筋的连接细节。使用这两个细节中的任何一个的试样都可以超过塑料连杆旋转的要求。

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