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A simplified contact-friction methodology for modeling wire breaks in parallel wire strands

机译:用于模拟平行线股中的断线的简化接触摩擦方法

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摘要

A simplified semi-analytical contact-friction approach is proposed to study the load transfer between tightened parallel steel wires, commonly used in suspension bridge main cables. Some of these wires tend to break at sporadic locations due to corrosion and/or material defects. However, owing to friction, in the vicinity of the break the load is distributed among neighboring wires and at a further distance away from the break, the broken wires recover partially their load carrying capacity. To model the load transfer due to friction, elasto-perfectly plastic springs are placed at the contact points between the wires. These springs have varying yielding force values, depending on their proximity to the clamping loads which are determined from an analytical solution to a point load (Flamant's solution in 2D and Boussinesq's solution in 3D). The model is validated on 2D and 3D simpler problems by comparing the behavior to a reference solution obtained from a full contact analysis. Studies on various sized wire strands, breaking at a random wire sequence and at different locations, show the redistribution of the stresses between neighboring wires and the overall nonlinear load-loss response of the system. Furthermore, to overcome the storage and speed limitations of serial computers, the method is implemented on a parallel computer architecture and the number of linearonlinear iterations, CPU time and parallel scalability are reported.
机译:提出了一种简化的半解析接触摩擦方法,以研究通常用于悬索桥主缆中的平行拉紧的钢丝之间的载荷传递。由于腐蚀和/或材料缺陷,其中一些导线往往会在零星的位置断裂。然而,由于摩擦,在断裂处附近,负载被分布在相邻的电线之间,并且在离断裂处更远的距离处,断裂的电线部分地恢复了它们的负荷承载能力。为了模拟由于摩擦引起的载荷传递,将弹性完美的塑料弹簧放在导线之间的接触点上。这些弹簧具有不同的屈服力值,具体取决于它们与从分析解决方案到点载荷(在2D中为Flamant的解决方案,在3D中为Boussinesq的解决方案)确定的夹紧载荷附近。通过将行为与从完全接触分析获得的参考解决方案进行比较,可以在2D和3D较简单的问题上验证该模型。对各种尺寸的线束的研究表明,线束在随机的线序处和不同的位置断裂,表明相邻线束之间应力的重新分布以及系统的整体非线性载荷损失响应。此外,为了克服串行计算机的存储和速度限制,该方法在并行计算机体系结构上实现,并且报告了线性/非线性迭代次数,CPU时间和并行可伸缩性。

著录项

  • 来源
    《Computers & Structures》 |2012年第6期|p.39-53|共15页
  • 作者单位

    Department of Civil Engineering & Engineering Mechanics, Columbia University, New York, NY 10027, USA;

    Department of Civil Engineering & Engineering Mechanics, Columbia University, New York, NY 10027, USA;

    Department of Civil Engineering & Engineering Mechanics, Columbia University, New York, NY 10027, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    contact; friction; suspension bridges; parallel strands;

    机译:联系;摩擦;吊桥;平行线;

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