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Experimental Research of the Time-Dependent Effects of Steel–Concrete Composite Girder Bridges during Construction and Operation Periods

机译:钢混凝土组合梁桥梁施工及运营期时变效应的试验研究

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摘要

The present work aimed to study the effects of temperature changes and concrete creep on I-shaped steel–concrete composite continuous girder bridges during construction and operation processes. This study combined structural health monitoring data, an ANSYS finite element simulation, and the age-adjusted effective modulus method to obtain the variation laws of temperature and internal force in composite girders. Moreover, a temperature gradient model was proposed that is suitable for bridges in Hebei, China. In addition, a concrete creep experiment under unidirectional axial compression was performed using concrete specimens prepared from the concrete batch used to create the composite girder. The long-term evolution laws of the deflection and internal force of the composite girder were obtained by predicting the concrete creep effect. The measured data showed that the temperature variation trends of the steel beam and concrete slab were characterized by a sinusoidal curve without a temperature lag. The heating rate of the concrete slab was higher than the cooling rate. The prediction results showed that the internal force changes in the composite girder were characterized by three stages. The stress changes in the composite girder during the first 10 days were significant and the stress charge rate of the concrete slab, the steel girder and the shear stud can reach 5%–28%. The stress change rate decreased continuously during 10–90 days. The stress changed slowly and smoothly after 90 days. This research can provide feedback and reference for structural health monitoring and service safety control of similar I-shaped steel–concrete composite bridges.
机译:本工作旨在研究温度变化和混凝土蠕变对工字型钢混凝土组合连续梁桥在施工和运营过程中的影响。这项研究结合结构健康监测数据,ANSYS有限元模拟和按年龄调整的有效模量方法来获得复合梁的温度和内力的变化规律。此外,提出了适用于中国河北桥梁的温度梯度模型。另外,使用从用于制造复合梁的混凝土批料制备的混凝土试样进行了单向轴向压缩下的混凝土蠕变实验。通过预测混凝土的蠕变效应,获得了组合梁的挠度和内力的长期演变规律。实测数据表明,钢梁和混凝土板的温度变化趋势具有正弦曲线特征,没有温度滞后。混凝土板的加热速率高于冷却速率。预测结果表明,组合梁的内力变化具有三个阶段的特征。在最初的10天内,组合梁的应力变化很大,混凝土板,钢梁和抗剪栓钉的应力荷率可以达到5%–28%。应力变化率在10-90天内持续下降。 90天后,压力缓慢而平稳地变化。这项研究可以为类似的工字型钢混凝土组合桥的结构健康监测和服务安全控制提供反馈和参考。

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