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Progressive collapse simulation of the steel-concrete composite floor system considering ductile fracture of steel

机译:考虑钢的延性断裂的钢-混凝土组合楼板系统的逐步倒塌模拟

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The prediction of the structural behavior under the progressive collapse scenario has received growing attentions in recent years. The failure of the bolted shear tab connection is usually dominated by the shear fracture. However, few researchers have considered the effect of the shear fracture in the progressive collapse simulation. This research develops a practical modeling routine to upscale the material shear fracture model in the collapse simulation of a large-scale floor system. The calibration and validation of the material shear fracture model employ five types of plate coupon specimens with significantly different stress triaxiality and Lode angle parameters. Via optimizing the coupon test data, this study determines the 3-D fracture locus of three fracture models, which are subsequently used to predict the fracture of a coupon specimen in the tension and shear conditions. Among the three fracture models, the Bai model has demonstrated good accuracy for a wide range of stress triaxiality and Lode angle parameters, while the applicability of the other two fracture models are confined to the stress triaxiality and Lode angle parameters, from which they are calibrated. These fracture models are also used to simulate the fracture of a girder-to-column connection under a center column removal scenario, which indicates the fracture in both the girder flange and girder web depends highly on the Lode angle. Prior to analyzing the full-scale composite floor system, the numerical study calibrates the fracture strain in the macro shell elements used to build the girder-to-column connection model, based on the fracture locus determined from the coupon tests. The fracture strain based shell element model is then used in the steel-concrete composite floor simulation, and demonstrates a good prediction of the structural resistance curve and the failure mode compared to the experimental results.
机译:近年来,在渐进倒塌的情况下对结构行为的预测越来越受到关注。螺栓连接的剪切片连接的故障通常由剪切断裂决定。但是,很少有研究者在渐进式塌陷模拟中考虑剪切断裂的影响。这项研究开发了一种实用的建模程序,可以在大型地板系统的塌陷模拟中对材料剪切断裂模型进行放大。材料剪切断裂模型的校准和验证使用五种类型的板试样,它们的应力三轴性和洛德角参数明显不同。通过优化试件测试数据,本研究确定了三个断裂模型的3-D断裂轨迹,随后将其用于预测在拉伸和剪切条件下试件试样的断裂。在这三个裂缝模型中,Bai模型对各种应力三轴性和洛德角参数均显示出良好的精度,而其他两个裂缝模型的适用范围仅限于应力三轴性和洛德角参数,并据此对它们进行了校准。 。这些断裂模型还用于模拟中心柱移除情况下的梁到柱连接的断裂,这表明在梁翼缘和梁腹板中的断裂都高度依赖于Lode角。在分析全尺寸复合地板系统之前,数值研究会根据通过试样试验确定的断裂轨迹,对用于建立梁到柱连接模型的宏壳单元中的断裂应变进行校准。然后将基于断裂应变的壳单元模型用于钢-混凝土复合地板仿真中,与实验结果相比,可以很好地预测结构阻力曲线和破坏模式。

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