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3D Coordinating Relations between Steel Cables and Concrete of Prestressed Concrete Beam Bridges

机译:预应力混凝土梁桥的钢索与混凝土之间的3D协调关系

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摘要

Interaction between steel cables and concrete is complicated in prestressed concrete bridges, especially in curved prestressed concrete bridges. The most significant behavior of curved beam bridges under the loads is that, at the same time of vertical flexure, torsion occurs on the cross section, which complicates the mechanical analysis to curved beam bridges. Based on coordinating relations of steel cables and concrete (CRSC), the grillage structure finite-element method was adopted to analyze the spatial effect of curved beam bridges. This way, the effect of all prestressing procedures can be simulated properly, including the prestressing loss due to concrete shrinkage and creep, batch prestressing of the cables, etc. Furthermore, it is effective to analyze the integrated behavior of the combined steel cables space out and concrete. The efficiency and reliability of the CRSC method is demonstrated by our analysis system WXQ2.0 developed for curved-skew bridges.
机译:在预应力混凝土桥梁中,尤其是在弯曲的预应力混凝土桥梁中,钢缆与混凝土之间的相互作用非常复杂。弯曲梁桥在荷载作用下最显着的性能是,在垂直挠曲的同时,截面上会发生扭转,这使得弯曲梁桥的力学分析变得复杂。在考虑钢缆与混凝土协调关系的基础上,采用格栅结构有限元方法分析了弯梁桥的空间效应。这样,就可以正确模拟所有预应力程序的效果,包括混凝土收缩和蠕变引起的预应力损失,电缆的批量预应力等。此外,有效地分析组合钢缆在空间上的整体行为。和具体。我们为弯斜桥开发的分析系统WXQ2.0证明了CRSC方法的效率和可靠性。

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