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A Study of the Torsional Behavior of Reinforced Concrete Trough Girder Based On ABAQUS

机译:基于ABAQUS的钢筋混凝土槽形梁的抗扭性能研究

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With the rapid development of rail transportation, higher requirements are put forward on the environment, landscape, noise and other issues. Trough girders have gradually began to be widely used for its several advantages, such as lower building height, higher cross-section space utilization, better appearance, lower cost and noise reduction effect. In the present, compression and bending theory on reinforced concrete (RC) trough girder has been ideal. But- torsional problems of RC though girder, due to the lateral sway force of train, are still difficult to solve entirely. In this paper, limited torque of RC trough girder was analyzed by using finite element analysis software ABAQUS. Also, concrete damaged plasticity model was adopted during analysis and the results obtained from the finite element analysis were verified against experimental results of other research. The result reveals that finite element analysis can be superior to simulate the torsion failure of RC trough girder.
机译:随着铁路运输的飞速发展,对环境,景观,噪声等问题提出了更高的要求。槽形梁由于其较低的建筑物高度,较高的横截面空间利用率,更好的外观,较低的成本和降低噪音的优点而逐渐开始被广泛使用。目前,钢筋混凝土(RC)槽形梁的压缩和弯曲理论已经很理想。由于火车的横向摇摆力,尽管有梁,但钢筋混凝土的扭转问题仍然很难完全解决。本文利用有限元分析软件ABAQUS对钢筋混凝土槽形梁的极限扭矩进行了分析。此外,在分析过程中采用了混凝土破损可塑性模型,并将有限元分析的结果与其他研究的实验结果进行了验证。结果表明,有限元分析可以更好地模拟钢筋混凝土槽形梁的扭转破坏。

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