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Experimental and numerical investigations on extremely-low-cycle fatigue fracture behavior of steel welded joints

机译:钢焊接接头极低周疲劳断裂行为的实验与数值研究

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Beam-to-column welded joints in moment-resisting steel frames may undergo extremely low cycle fatigue in earthquake action. The aim of this paper is to investigate the fatigue failure behavior by means of experimental study and finite element analysis. Experiments were conducted on the six full scale beam-to-column welded joints. The seismic performance of welded joints with different weld access hole geometries was compared among them and the effect of crack initiation and growth on the load carrying capacity of welded joints was discussed. In addition, a continuum damage mechanics model used previously for monotonic loading was reformulated in order to account for the extremely low cycle loading condition. The model was implemented in a commercial nonlinear finite element software of ABAQUS, which was adopted to predict the fracture of beam-to-column welded joints subjected to monotonic loading and extremely low cycle loading. The predicted load displacement response agrees well with the test results. The distribution and evolution of damage in the welded joints were calculated during crack initiation and propagation. It is found that the methodology based on continuum damage mechanics proposed in the paper can successfully predict fracture behavior of beam-to-column welded joint with reasonable accuracy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:抗弯钢框架中的梁柱焊接接头在地震作用下可能会遭受极低的循环疲劳。本文旨在通过实验研究和有限元分析来研究疲劳破坏行为。在六个完整的梁柱焊接接头上进行了实验。比较了不同通孔几何形状的焊接接头的抗震性能,讨论了裂纹萌生和扩展对焊接接头承载能力的影响。此外,重新制定了先前用于单调加载的连续损伤力学模型,以解决极低的循环加载条件。该模型在ABAQUS的商业非线性有限元软件中实现,该软件用于预测梁-柱焊接接头在单调载荷和极低周期载荷下的断裂。预测的载荷位移响应与测试结果非常吻合。计算了裂纹萌生和扩展过程中焊接接头损伤的分布和演变。结果表明,本文提出的基于连续损伤力学的方法能够以合理的精度成功地预测梁柱焊接接头的断裂行为。 (C)2015 Elsevier Ltd.保留所有权利。

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