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The shear lag effects on welded steel single angle tension members

机译:剪切滞后对焊接钢单角度受拉构件的影响

摘要

This paper presents a study of the shear lag effects on the behaviour and strength of welded steel single angle tension members. A total of thirteen single angles with welded end connections were tested in tension. The test parameters included long and short leg connections, balanced and unbalanced weld arrangements and longitudinal fillet weld lengths. Out of the thirteen specimens, nine failed by fracture of the gross section and four failed in the welds. The efficiency of the specimens, which is defined as the ratio of the test ultimate load (P test) to the tensile capacity (a product of the gross sectional area and the tensile strength of the material) of the specimens varied from 0.82 to 1.02. It can be observed from the test results that both the ultimate loads sustained by the short leg connected angles and the ductility of all the angle specimens were greater when the balanced weld arrangement was used in the connections than when the specimens were connected using the unbalanced welded arrangement. Finite element analyses of the specimens were conducted and the analysis results compared well with the test results. The capacities of the test specimens were also evaluated using various design approaches. In general the design specifications (AISC-LRFD, BS5950-1:2000, and CSA-S16-01) provided good predictions of the tensile capacity of the single angle specimens with a reasonable degree of conservatism. However, the design specifications underestimated the tensile capacity of specimens which were connected by the short leg and with a balanced weld arrangement.
机译:本文研究了剪切滞后对焊接钢单角度受拉构件的性能和强度的影响。总共测试了13个带有焊接端接的单角度拉伸。测试参数包括长脚和短脚连接,平衡和不平衡焊接布置以及纵向角焊缝长度。在这13个样品中,有9个由于断面断裂而失效,有4个在焊缝中失效。样品的效率定义为试验极限载荷(P test)与样品的拉伸能力(材料的总截面积和材料的拉伸强度的乘积)之比,范围为0.82至1.02。从测试结果可以看出,短脚连接角所承受的极限载荷和所有角钢试样的延展性在连接中采用平衡焊接布置时均比使用不平衡焊接方式连接时要大。安排。对样品进行了有限元分析,并将分析结果与测试结果进行了比较。还使用各种设计方法评估了试样的容量。总的来说,设计规范(AISC-LRFD,BS5950-1:2000和CSA-S16-01)提供了对具有合理保守度的单角度试样抗拉能力的良好预测。但是,设计规范低估了通过短支腿和平衡焊接布置连接的试样的拉伸能力。

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