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Finite element simulation and optimal analysis of surfacing on steel orthotropic bridge deck

机译:正交异性钢桥面铺装有限元模拟与优化分析

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摘要

To analyze the stress state of steel orthotropic deck pavement and provide reference for the design of the overlay, the inner stress state and strain distribution of surfacing under the load of the deformation of the whole bridge structure and tyre load are analyzed by the finite element method of submodeling. Influence of surfacing modulus on the strain state of the overlay is analyzed for the purpose of the optimal design of the overlay structure. Analysis results show that the deformation of the whole bridge structure has no evident influence on the stress state of the overlay. The key factor of the overlay design is the transverse tensile strain in the overlay above the upper edge of web plate of rib. The stress state of the overlay is influenced evidently by the modulus of rigidity transform overlay. And the stress state of the overlay can be optimized and lowered by increasing the modulus and thickness of rigidity transform overlay. The fatigue test has been done to evaluate the fatigue performance and modulus of different deck pavement materials such as epoxy asphalt, SBS modified asphalt, rosphalt asphalt which can provide reference for deck pavement structure design.
机译:为分析正交异性钢桥面铺面的应力状态,为铺面设计提供参考,采用有限元方法分析了整个桥梁结构变形荷载和轮胎荷载作用下堆焊层的内部应力状态和应变分布。子模型。为了优化覆盖结构的目的,分析了表面模量对覆盖层的应变状态的影响。分析结果表明,整个桥梁结构的变形对覆盖层的应力状态没有明显影响。覆盖层设计的关键因素是肋腹板上边缘上方覆盖层的横向拉伸应变。覆盖层的应力状态明显受到刚度变换覆盖层的模量的影响。通过增加刚度变换覆盖层的模量和厚度,可以优化和降低覆盖层的应力状态。已经进行了疲劳测试,以评估不同甲板路面材料的疲劳性能和模量,例如环氧沥青,SBS改性沥青,rosphalt沥青,它们可以为甲板路面结构设计提供参考。

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