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An Experimental Study of Welded Bar Sleeve Wall Panel Connection under Tensile, Shear, and Flexural Loads

机译:拉伸,剪切和挠曲载荷下的焊接钢筋套筒壁板连接的实验研究

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Abstract This paper presents an experimental study of a new grouted splice connection for wall panels, called Welded Bar Sleeve (WBS). The connections were made from steel pipes and tested with incremental tensile, shear and flexural loads until failure. The aim is to determine the behaviour of the connection under the three load cases. For this, the connections are evaluated in terms of the load–displacement responses, ultimate capacities, ductility responses and some feasibility assessment criteria. WBS was found to provide sufficient strength at the bar embedded length of 8, 8 and 11 times the bar diameter under tensile, shear and flexural loads, respectively. It is effective under tension, but could only service up to 1/3 of its ultimate shear capacity. Flexural load is the most critical load case for the connection. For this, further enhancements are required when subjected to shear and flexural loads.
机译:摘要本文提出了一种新的墙板灌浆拼接连接的实验研究,该连接称为焊接钢筋套管(WBS)。连接是由钢管制成的,并在增加的拉伸,剪切和挠曲载荷下进行测试,直到失效。目的是确定三种负载情况下的连接行为。为此,根据载荷-位移响应,极限承载力,延性响应和一些可行性评估标准对连接进行评估。发现在拉伸,剪切和弯曲载荷下,WBS分别在钢筋直径的8、8和11倍时提供足够的强度。它在拉力作用下有效,但最多只能使用其极限剪切能力的1/3。弯曲载荷是连接的最关键载荷情况。为此,在承受剪切和弯曲载荷时需要进一步的增强。

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