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Interaction Between Patch Loading, Bending, and Shear in Steel Girder Bridges Erected with the Incremental Launching Method

机译:增量发射法架设钢梁桥的荷载,弯曲与剪力之间的相互作用

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In the incremental launching method (ILM), a bridge structure is assembled behind one of the end supports and moved longitudinally, passing by intermediate piers until it reaches the other end support. As the structure moves forward, the cantilever length increases until the launching nose reaches the next pier or abutment. In this process, at the cantilever support, the steel girders are subject to a combination of stresses due to the reaction force (or patch loading), major-axis bending, and shear. This loading condition, known as the M-V-P interaction, may lead to high stress concentrations that may cause local instability in the steel girder panels located at the cantilever support, principally due to the high web slenderness ratios. This paper presents the strain/stress measurements obtained from a steel I-girder bridge erected with the ILM. The instrumentation was positioned at three different locations along one of the I-girders to capture the stress variation, as the bridge was launched. These measurements serve as the basis to better understand the M-V-P interaction in steel girder bridges erected with this method. In addition, the field measurements are compared to available analytical models that predict this interaction in steel I-girder bridges erected with the ILM.
机译:在增量发射法(ILM)中,将桥结构组装在一个端支架的后面并纵向移动,经过中间墩直到它到达另一个端支架。随着结构的向前移动,悬臂的长度会增加,直到发射鼻到达下一个墩或桥台为止。在此过程中,在悬臂支撑处,钢梁承受反作用力(或补片加载),主轴弯曲和剪切力引起的应力的组合。这种加载条件(称为M-V-P相互作用)可能会导致高应力集中,这可能会导致悬臂支撑处的钢梁面板局部不稳定,这主要是由于腹板细长比高。本文介绍了用ILM竖起的钢制I形梁桥获得的应变/应力测量结果。仪表被放置在沿工字梁之一的三个不同位置,以捕获桥梁发射时的应力变化。这些测量结果是更好地了解使用此方法竖立的钢梁桥中M-V-P相互作用的基础。此外,将现场测量结果与可预测使用ILM竖立的钢制I-梁桥中这种相互作用的可用分析模型进行了比较。

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