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Half a century of reinforced concrete electric poles maintenance: inspection, field-testing, and performance assessment

机译:半个世纪的钢筋混凝土电极维护:检查,现场测试和性能评估

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摘要

Application of reinforced concrete (RC) poles as overhead electrical transmission line supports has become of great interest during recent years worldwide. The higher strength, longer life, and the potential to span longer distances than steel poles are the key reasons behind this tendency. A great variety of architectural shapes, relatively low maintenance costs, and high electrical resistance make RC a prominent alternative to steel. The drawbacks related to the application of RC poles include the high self-weight and vulnerability to damage. Self-weight might be reduced by prestressing the reinforcement and/or forming a tubular structure for the poles. However, both of these options might increase the vulnerability of the supports. Moreover, long-term processes (deterioration of concrete and corrosion of steel reinforcement) complicate the prediction of structural properties. This paper presents results of the everlasting inspection of the overhead electric power distribution system in Lithuania: technical state of more than 500 RC supports was assessed; selected poles were tested until failure. A specific point of this research is that most of the inspected supports were under maintenance since the middle of last century. The inspection results were used for developing the technical condition of RC pole evaluation scale proposed in this paper.
机译:钢筋混凝土(RC)杆作为架空电气传输线支撑的应用在近年来近年来兴趣。比钢铁极高的强度,更长的寿命和跨度距离更长的距离是这种趋势背后的主要原因。各种各样的建筑形状,相对较低的维护成本,高电阻使RC成为钢的突出替代品。与RC杆的应用有关的缺点包括高自重和损坏的脆弱性。通过预应力加固和/或形成杆的管状结构,可以减少自我重量。但是,这两个选项都可能会增加支持的漏洞。此外,长期工艺(混凝土劣化和钢筋腐蚀)使结构性质的预测复杂化。本文介绍了立陶宛架空电力分配系统的永恒检测的结果:评估了500多个RC支持的技术状态;选择了选定的杆,直到失败。这项研究的特定点是自上世纪中叶以来的大多数检查的支持都在维护。检查结果用于开发本文提出的RC极值评估规模的技术条件。

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