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Structural Behavior of Spliced Post-Tensioned Girders with Precast Box Segments

机译:带有预制箱形节段的后张连接大梁的结构特性

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It is widely known that the precast segment method facilitates quality control and reduces the costs as well as the construction period. The method, however, has limited applicability since it causes structurally unstable behaviors due to stress concentration in the joints. Against this backdrop, this paper suggested precast segment joints for the improved structural performance and experimentally evaluated the structural performance of the proposed joints in terms of crack pattern, mode of failure, strain, maximum load and displacement ductility. In order to improve constructability as well as structural performance, this paper suggests joints combined with shear key, post tension and steel rod and conducts static load tests. The test results showed that, in terms of maximum load capacity, the resistance of a girder where shear key and post tension are applied to joint details stood at around 86.4% of a monolithic girder’s and demonstrated better ductility behaviors than the monolithic girder.
机译:众所周知,预制分段法有利于质量控制并减少成本和工期。然而,由于该方法由于接头中的应力集中而导致结构不稳定的行为,因此该方法的适用性有限。在这种背景下,本文提出了预制节理节点以改善结构性能,并通过裂缝模式,破坏模式,应变,最大载荷和位移延展性,对拟议节理的结构性能进行了实验评估。为了提高可施工性和结构性能,本文提出了结合剪切键,后张拉力和钢杆的节点,并进行静载荷测试。测试结果表明,就最大负载能力而言,将剪力键和后张拉施加到节点细节上的大梁的阻力约为整块大梁的86.4%,并显示出比整块大梁更好的延展性。

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