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Shear capacity of stud shear connectors with initial damage: Experiment, FEM model and theoretical formulation

机译:具有初始损伤的螺旋剪切连接器的剪切能力:实验,有限元模型和理论配方

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摘要

Initial damage to a stud due to corrosion, fatigue, unexpected overloading, a weld defect or other factors could degrade the shear capacity of the stud. Based on typical push-out tests, a FEM model and theoretical formulations were proposed in this study. Six specimens with the same geometric dimensions were tested to investigate the effect of the damage degree and location on the static behavior and shear capacity of stud shear connectors. The test results indicated that a reduction of up to 36.6% and 62.9% of the section area of the shank could result in a dropping rate of 7.9% and 57.2%, respectively, compared to the standard specimen shear capacity. Numerical analysis was performed to simulate the push-out test and validated against test results. A parametrical study was performed to further investigate the damage degree and location on the shear capacity of studs based on the proposed numerical model. It was demonstrated that the shear capacity was not sensitive to the damage degree when the damage section was located at 0.5d, where d is the shank diameter, from the stud root, even if the stud had a significant reduction in area. Finally, a theoretical formula with a reduction factor K was proposed to consider the reduction of the shear capacity due to the presence of initial damage. Calculating K was accomplished in two ways: a linear relationship and a square relationship with the damage degree corresponding to the shear capacity dominated by the section area and the nominal diameter of the damaged stud. This coefficient was applied using Eurocode 4, AASHTO LRFD (2014) and GB50017-2003 ( 2003) and compared with the test results found in the literature. It was found that the proposed method produced good predictions of the shear capacity of stud shear connectors with initial damage.
机译:由于腐蚀,疲劳,意想不到的重载,焊接缺陷或其他因素的初始损坏可能会降低螺柱的剪切容量。基于典型的推出测试,本研究提出了有组织模型和理论制剂。测试了具有相同几何尺寸的六个标本,以研究损伤程度和位置对螺柱剪切连接器的静态行为和剪切容量的影响。测试结果表明,与标准试样剪切容量相比,柄部的截止率高达36.6%和62.9%,分别导致跌幅为7.9%和57.2%。进行数值分析来模拟推出测试并验证测试结果。进行了参数研究,进一步研究了基于所提出的数值模型的螺柱剪切容量的损伤度和位置。有人证明,当损伤部分位于0.5d时,剪切容量对损伤程度不敏感,其中d是牙柄直径,即使螺柱在区域的显着减少。最后,提出了具有减少因子K的理论公式,以考虑由于存在初始损伤而降低剪切容量。计算k以两种方式完成:线性关系和与对应于由截面区域主导的剪切容量和损坏螺柱标称直径的损伤程度的平方关系。使用Eurocode 4,AASHTO LRFD(2014)和GB50017-2003(2003)应用该系数,并与文献中发现的测试结果相比。结果发现,该方法产生了初始损坏的螺旋剪切连接器的剪切容量的良好预测。

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