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Camber calculation of prestressed concrete I-Girder considering geometric nonlinearity

机译:考虑几何非线性的预应力混凝土工字梁拱形计算

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摘要

Prestressed concrete I-girders are subject to different load types at their construction stages. At the time of strand release, i.e., detensioning, prestressed concrete girders are under the effect of dead and prestressing loads. At this stage, the camber, total net upward deflection, of prestressed girder is summation of the upward deflection due to the prestressing force and the downward deflection due to dead loads. For the calculation of the upward deflection, it is generally considered that prestressed concrete I-girder behaves linear-elastic. However, the field measurements on total net upward deflection of prestressed I-girder after detensioning show contradictory results. In this paper, camber calculations with the linear-elastic beam and elastic-stability theories are presented. One of a typical precast I-girder with 120 cm height and 31.5 m effective span length is selected as a case study. 3D finite element model (ELM) of the girder is developed by SAP2000 software, and the deflections of girder are obtained from linear and nonlinear-static analyses. Only geometric nonlinearity is taken into account. The material test and field measurement of this study are performed at prestressing girder plant. The results of the linear-elastic beam and elastic-stability theories are compared with ELM results and field measurements. It is seen that the camber predicted by elastic-stability theory gives acceptable results than the linear-elastic beam theory while strand releasing.
机译:预应力混凝土工字梁在其施工阶段要承受不同的荷载类型。在钢绞线释放时,即在张紧时,预应力混凝土梁受到恒载和预应力的作用。在此阶段,预应力梁的外倾总净向上挠度是由于预应力引起的向上挠度与由于静载引起的向下挠度的总和。在计算向上挠度时,通常认为预应力混凝土工字梁具有线弹性。但是,在张拉后预应力工字梁的总净向上挠度的现场测量结果是矛盾的。本文提出了利用线弹性梁和弹性稳定理论进行的弯度计算。案例研究选择了一个典型的预制工字梁,其高度为120厘米,有效跨度为31.5 m。用SAP2000软件开发了3D有限元模型,通过线性和非线性静力分析获得了梁的挠度。仅考虑几何非线性。这项研究的材料测试和现场测量是在预应力梁厂进行的。将线弹性梁和弹性稳定性理论的结果与ELM结果和现场测量结果进行比较。可以看出,在线束释放时,由弹性稳定性理论预测的外倾比线性弹性梁理论能给出可接受的结果。

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