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A numerical investigation of static resistance of welded planar steel tubular joints under in-plane and out-of-plane bending at elevated temperatures

机译:高温下平面内和平面外弯曲焊接平面钢管接头静电阻的数值研究

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This study presents the results of a numerical investigation on static resistance of welded planar steel tubular joints under in-plane and out-of-plane bending moments at elevated temperatures. The numerical simulations were carried out using the commercial finite Element software ABAQUS v6.14-1 and the simulation model was validated by comparing against test results for CHS joints under brace in-plane bending at elevated temperatures.Extensive numerical parametric simulations were performed for CHS/SHS/EHS joints under in-plane and out-of-plane bending at elevated temperatures, to establish a database of results covering a wide range of geometrical parameters, including brace to chord diameter ratio, the angle between brace to chord members, and chord diameter to twice chord thickness ratio.The ratios of joint elevated temperature resistance to ambient temperature resistance were compared to the steel yield strength reduction factor, the steel Young's modulus reduction factor, and the average of the above these reduction factors at different elevated temperatures. Based on the comparisons, it has been found that using the reduction factor for the yield strength of steel to modify the ambient temperature equations will overestimate the resistance of joints at elevated temperatures. As a simplified and safe recommendation, the ambient temperature joint resistance equations can be modified by the average reduction factors for the Young's modulus and yield strength at elevated temperatures. This modification factor can be increased to the yield strength reduction factor when the brace and chord widths/diameters are the same.
机译:这项研究提出了在高温下平面内和平面外弯矩下焊接平面钢管接头静电阻的数值研究结果。使用商业有限元软件ABAQUS v6.14-1进行了数值模拟,并通过与高温下支撑面内弯曲下的CHS接头的测试结果进行比较来验证了仿真模型.CHS进行了广泛的数值参数模拟/ SHS / EHS接头在高温下的平面内弯曲和平面外弯曲,以建立一个涵盖范围广泛的几何参数的结果数据库,包括支撑和弦直径比,支撑与弦成员之间的角度以及将接头高温抵抗力与环境温度抵抗力之比与钢屈服强度降低因子,钢杨氏模量降低因子以及上述降低因子在不同高温下的平均值进行比较。基于比较,发现使用降低屈服强度的系数来修改钢的环境温度方程将高估接头在高温下的电阻。作为一种简化和安全的建议,可以通过杨氏模量和高温屈服强度的平均折减系数来修改环境温度接头电阻方程。当撑杆和弦的宽度/直径相同时,可以将此修改系数增加到屈服强度降低系数。

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