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An investigation into the long-term excessive deflection of pc viaducts by using 3D multi-scale integrated analysis

机译:使用3D多尺度综合分析研究PC高架桥的长期过度挠度

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摘要

This paper investigates the causes of excessive long-term deflection of PC bridge viaducts by using 3D integrated material-structural analyses to take into account the coupled chemo-physics at various scales from the molecular size of water to the structural members. The excessive deflection observed at site is found to be rooted in the deformation of cement paste stemming from both externally applied loads and internal stresses driven by capillary surface tension and disjoining pressures in micro-pores. Not only the former but also the later effect is focused in the serviceability control of PC viaducts. It is found that the nonlinear, long-term deflection of the bridge viaduct can be approximately separated into the components of deflections provoked by external mechanistic and internal thermodynamic actions, even though each component is nonlinearly associated with the thermodynamic states of moisture in micro-pores of cement hydrates.
机译:本文通过使用3D集成材料-结构分析来研究PC桥高架桥长期挠曲的原因,并考虑了从水分子大小到结构成员的各种尺度的耦合化学物理现象。发现在现场观察到的过度挠度根源于水泥浆的变形,该变形源于外部施加的载荷以及毛细管表面张力和微孔中分离压力驱动的内部应力。不仅前者而且后者的作用都集中在PC高架桥的可使用性控制中。发现桥高架桥的非线性,长期挠曲可以近似地分为由外部机械和内部热力学作用引起的挠曲分量,即使每个分量与微孔中水分的热力学状态非线性关联也是如此。水泥水合物。

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