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Axial test of full-scale columns strengthened with Jacket section

机译:用夹套部分加强全尺寸柱的轴向试验

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This study examines the effect of different arrangements of transverse reinforcement in the jacket section on the axial performance of full-scale reinforced-concrete columns strengthened with a seismic section enlargement approach. For the jacket section with seismic details, overlapped channel-shape bars and prefabricated bar units were designed as the closed peripheral hoops, and V-ties or segmented cross-ties were used for the supplementary transverse reinforcement. For the compressive tests of full-scale strengthened columns with a 750 mm square section, a steel loading frame with a 40 000 kN capacity hydraulic jack was specially devised. Test results showed that the strengthened columns without supplementary V-ties in the jacket section possessed lower ductility capacity when compared with that of the existing non-seismic column. At the same level of transverse reinforcement index, the axial ductility ratio obtained from the present full-scale columns was typically lower than that compiled from the scaled-down column specimens with a square section of 200-300 mm. However, the strengthened column with prefabricated bar unit hoops including supplementary V-ties exhibited good ductility, which was comparable to the axial ductility ratios obtained in scaled-down columns, although a size effect potentially induced a more rapid decreasing rate at the descending branch of the stress-strain relationship of the concrete.
机译:本研究探讨了横向增强件在夹克段中的不同布置对全尺寸增强混凝土柱的轴向性能,采用地震段扩大方法。对于具有地震细节的夹套部分,设计重叠的通道形条和预制的杆单元作为封闭的外围箍,并且V形或分段交叉扎带用于补充横向增强。对于具有750毫米方形部分的全尺寸加强柱的压缩测试,专门设计了一种带40 000 kn容量液压千斤顶的钢装载框架。试验结果表明,与现有的非地震柱的夹克截面中没有补充V形型的加强柱具有较低的延展性容量。在横向增强指数的相同水平中,从本全尺寸柱获得的轴向延展性通常低于从缩小的柱试样编制的轴向延展性比,方形部分为200-300mm。然而,具有预制条单元箍的加强柱,包括补充V形圈的良好的延展性,其与缩小柱中获得的轴向延展性比相当,尽管尺寸效应可能在下降分支处诱导更快速的降低速率混凝土的应力 - 应变关系。

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