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Numerical study of rigid steel beam-column joints under impact loading

机译:冲击载荷作用下钢制钢梁柱节点的数值研究

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This paper presents the numerical simulations of rigid steel beam-column joints under impact loads. In the model, beams, columns and bolts are simulated by solid elements and surface-to-surface contact pairs are defined to take account of the interactions between beams and columns. Besides, a fracture model in ABAQUS is simplified to correlate the fracture strain to the stress triaxiality. Explicit dynamic solver is used in the simulations to overcome the problems of convergence induced by contact and fracture. Comparisons between numerical and experimental results demonstrate that the model is capable of predicting the dynamic responses of beam-column joints under impact loading with reasonably good accuracy in terms of the impact load and vertical displacement. Besides, the horizontal tension force in the joints can also be obtained from the numerical model, which shed light on the development of horizontal tension to resist the imposed impact load. Furthermore, a series of parametric studies is conducted to investigate the effects of impact energy and span-depth ratio (SDR) on the response of steel joints. Practical recommendations are provided for the design of steel joints under impact loading in accordance with the parametric studies. Finally, conclusions are drawn from the numerical simulations. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了在冲击载荷下刚性钢梁柱节点的数值模拟。在该模型中,梁,柱和螺栓由实体元素模拟,并且定义了面对面接触对,以考虑到梁和柱之间的相互作用。此外,简化了ABAQUS中的断裂模型,使断裂应变与应力三轴性相关。在仿真中使用显式动态求解器来克服由接触和断裂引起的收敛问题。数值和实验结果的比较表明,该模型能够在冲击载荷和垂直位移方面以相当好的精度预测梁柱节点在冲击载荷下的动力响应。此外,还可以从数值模型中获得接头中的水平拉力,从而阐明水平拉力的发展以抵抗施加的冲击载荷。此外,进行了一系列参数研究,以研究冲击能量和跨度-深度比(SDR)对钢接头响应的影响。根据参数研究为冲击载荷下的钢接头设计提供了实用建议。最后,从数值模拟得出结论。 (C)2017 Elsevier Ltd.保留所有权利。

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