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Design models for steel encased high-strength precast concrete piles under axial-flexural loads

机译:钢管钢封装钢材的设计型号在轴向弯曲载荷下的高强度预制混凝土桩

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The use of steel-encased precast concrete (SC) piles has risen rapidly for the construction of earthquake-resilient foundation systems for buildings in Japan and Southeast Asia. SC piles are used near the pile-pile cap connection owing to their increased ductility, and resistance against large bending moments and axial forces, compared to the other precast concrete piles. However, there are no official guidelines available for the design of SC piles in severe earthquakes, except for a proposed draft by the AIJ committee for the determination of bending capacities. In this work, a database of 79 tests on SC piles, all tested under axial-flexural loads, was created. The bending capacities obtained from these tests were used to verify the provisions of the proposed draft and the provisions for composite member design in AIJ, Eurocode 4 and, AISC. Furthermore, a distributed plasticity formulation was adopted to develop a non-linear static model, that takes into account the concrete confinement and local buckling of steel casing, for prediction of moment and drift capacities. The accuracy of the model was verified against various experiments, and the capability to reproduce the moment-drift relations was confirmed.
机译:钢包装的预制混凝土(SC)桩在日本和东南亚建筑物建设中迅速上升。与其他预制混凝土桩相比,由于它们的延展性增加,并且与其他预制混凝土桩相比,SC桩连接附近桩桩连接附近使用。但是,除了AIJ委员会确定弯曲能力的拟议草案外,没有官方指南。在这项工作中,在SC桩上的79个测试数据库,所有数据库都在轴向弯曲载荷下进行了测试。从这些测试中获得的弯曲能力用于验证拟议的草案的规定以及AIJ,Eurocode 4和Aisc的综合会员设计的规定。此外,采用分布式可塑性制剂来开发非线性静态模型,考虑到钢壳的混凝土限制和局部屈曲,以预测力矩和漂移能力。验证了模型的准确性,针对各种实验验证,并确认了重现瞬间漂移关系的能力。

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