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Experimental investigation of load distribution in a composite girder bridge at elastic versus inelastic states

机译:弹性与非弹性状态下组合梁桥荷载分布的试验研究

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摘要

Bridge design and evaluation involve the determination of the internal forces and moments that each bridge element must resist. In slab-on-girder bridges, the moment and shear caused by traffic loads are normally determined using load distribution factors. These factors are derived based on results of analytical models, numerical analyses, as well as actual loading tests, but there appears to be scant experimental data to gauge their accuracy, particularly beyond the elastic limit state. To address the scarcity of the experimental data and to understand how the distribution characteristics of concrete slab on steel girder composite bridges change with the advent of yielding and inelasticity, a 1 /3 scale model of a hypothetical composite bridge was tested to failure in this study. Extensive measurements were taken during the test to allow better understanding of the response of slab-on-girder bridges as well as their live load distribution characteristics at all stages of loading up to failure. The experimentally determined distribution factors for the tested bridge model are compared with the calculated values based on the Canadian Highway Bridge Design Standard, and the code values are found to overestimate the maximum moment in the interior loaded girder by about 22% and 33% at the elastic and the inelastic states, respectively.
机译:桥梁的设计和评估涉及确定每个桥梁元件必须抵抗的内力和力矩。在板桥上,交通荷载引起的弯矩和剪力通常使用荷载分布系数来确定。这些因素是基于分析模型,数值分析以及实际载荷测试的结果得出的,但似乎缺乏用于评估其准确性的实验数据,尤其是超出弹性极限状态的实验数据。为了解决实验数据的匮乏问题,并了解随着屈服和无弹性的出现,钢梁组合桥上混凝土板的分布特性如何变化,本研究对假设的组合桥的1/3比例模型进行了测试,以使其失效。在测试过程中进行了广泛的测量,以更好地了解板梁桥的响应以及在荷载直至破坏的所有阶段的活荷载分布特性。将根据试验确定的桥梁模型的实验确定分布因子与根据加拿大公路桥梁设计标准计算出的值进行比较,发现代码值高估了内部受力梁的最大弯矩约22%和33%。弹性状态和非弹性状态。

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