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首页> 外文期刊>Journal of Structural Engineering >Computational Parametric Study on Full-Scale Ultimate Tested Dynamic Message Sign with Welded Connections
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Computational Parametric Study on Full-Scale Ultimate Tested Dynamic Message Sign with Welded Connections

机译:焊接连接全尺寸极限测试动态信息符号的计算参数研究

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Transportation industries have commonly used welded connections in the production of dynamic message signs (DMSs) for several years. Even though with numerous alternatives such as bolt/rivet connections, the majority of the clients prefer welded connections in DMSs. However, the structural behavior of DMSs with welded connections has not been rigorously examined through computational analysis to date. Therefore, this study was conducted with the aim of computationally investigating the ultimate strength of DMS with welded connections. To achieve this aim, a finite element (FE) model was generated to examine the ultimate strength of the welded DMS tested. The FE model created in ABAQUS software was validated utilizing the testing data and observed an error of 3.33 only for the ultimate strength. Design parameters of the validated FE model such as weld length and damage adjustment factors like tensile yield strength and shear yield strength of filler weld were tuned to identify their influence on the ultimate strength of welded DMS via multiple parametric simulations. The damage adjustment factors were found to be the most influential parameters affecting the ultimate strength of the welded DMS. The parametric simulation studies further revealed that the performance of welded DMS was able to be optimized to improve the ultimate strength of DMS up to 29.95 compared to that of tested DMS. A design equation generated in a statistical manner was also proposed incorporating the most influential parameters to predict the ultimate strength of welded DMS. The design equation showed an average error of 10.46 for the prediction of ultimate strength of welded DMS in comparison to the results of tested DMS.
机译:多年来,运输行业在动态信息标志 (DMS) 的生产中普遍使用焊接连接。尽管有多种替代方案,例如螺栓/铆钉连接,但大多数客户更喜欢 DMS 中的焊接连接。然而,迄今为止,尚未通过计算分析对具有焊接连接的DMS的结构行为进行严格检查。因此,本研究旨在通过计算研究焊接连接DMS的极限强度。为了实现这一目标,我们生成了一个有限元 (FE) 模型来检查所测试的焊接 DMS 的极限强度。利用测试数据对 ABAQUS 软件中创建的有限元模型进行了验证,仅观察到极限强度的误差为 3.33%。通过多次参数化仿真,对经过验证的有限元模型的设计参数(如焊缝的焊缝长度和填缝的拉伸屈服强度和剪切屈服强度)等损伤调整因素进行了调整,以确定其对焊接DMS极限强度的影响。损伤调整因子是影响焊接DMS极限强度的最大影响因素。参数化仿真研究进一步表明,与测试DMS相比,焊接DMS的性能能够得到优化,使DMS的极限强度提高了29.95%。还提出了一个以统计方式生成的设计方程,其中包含最有影响力的参数来预测焊接DMS的极限强度。与测试DMS的结果相比,设计方程显示焊接DMS极限强度预测的平均误差为10.46%。

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