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Rehabilitation of corroded H-piles using friction-type bolted plate-based repair system

机译:使用摩擦式螺栓固定板修复系统修复腐蚀的H型桩

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This paper presents the details of an experimental and numerical study that was conducted to evaluate the effectiveness of a friction-type bolted steel plate-based system for underwater rehabilitation of steel H-piles with severe but localized corrosion. The repair system allows the applied axial load to be transferred from the original pile to the steel repair plates through friction at the interface between the pile flanges and the steel repair plates. To evaluate the performance of the repair system, seven 4.57 m-long HP12 x 53 (U.S. designation) piles were deteriorated to simulate corrosion of the flange and web. The piles were repaired using friction-type bolted steel plates and tested under axial compression to investigate the behavior of repaired piles. The test results demonstrated the effectiveness of the proposed repair system in terms of restoring the axial stiffness and capacity of the deteriorated piles. A rational approach for the design of the friction-type steel plate-based repair system is also summarized. A FE model was developed to simulate the repaired piles. Validated by the full-scale experimental results of seven retrofitted piles, the numerical model was used for a parametric study to investigate different factors that might affect the axial capacity of the strengthened piles. The research findings demonstrate that the proposed friction-type steel plate-based repair system can be easily used to restore the capacity of steel H-piles with severe but localized corrosion. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文详细介绍了一项实验和数值研究,以评估摩擦型螺栓连接钢板系统对具有严重腐蚀但局部腐蚀的H型钢水下修复的有效性。修复系统允许施加的轴向载荷通过桩法兰和钢修补板之间的界面处的摩擦力从原始桩传递到钢修补板。为了评估维修系统的性能,对七个4.57 m长的HP12 x 53(美国指定)桩进行了劣化处理,以模拟法兰和腹板的腐蚀。使用摩擦型螺栓固定的钢板对桩进行修复,并在轴向压缩下进行测试以研究修复后的桩的性能。测试结果证明了所提出的修复系统在恢复已损坏桩的轴向刚度和承载力方面的有效性。还总结了设计基于摩擦式钢板的修复系统的合理方法。开发了有限元模型来模拟修复后的桩。通过对七个改型桩的全面试验结果验证,该数值模型用于参数研究,以研究可能影响加固桩的轴向承载力的各种因素。研究结果表明,所提出的基于摩擦式钢板的修复系统可轻松用于恢复具有严重但局部腐蚀的H型钢的能力。 (C)2018 Elsevier Ltd.保留所有权利。

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