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Increasing the Capacity of Existing Bridges by Using Unbonded Prestressing Technology: A Case Study

机译:无粘结预应力技术提高既有桥梁承载能力的案例研究

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External posttensioning or unbonded prestressing was found to be a powerful tool for retrofitting and for increasing the life extension of existing structures. Since the 1950s, this technique of reinforcement was applied with success to bridge structures in many countries, and was found to provide an efficient and economic solution for a wide range of bridge types and conditions. Unbonded prestressing is defined as a system in which the post-tensioning tendons or bars are located outside the concrete cross-section and the prestressing forces are transmitted to the girder through the end anchorages, deviators, or saddles. In response to the demand for a faster and more efficient transportation system, there was a steady increase in the weight and volume of traffic throughout the world. Besides increases in legal vehicle loads, the overloading of vehicles is a common problem and it must also be considered when designing or assessing bridges. As a result, many bridges are now required to carry loads significantly greater than their original design loads; and their deck results still deteriorated by cracking of concrete, corrosion of rebars, snapping of tendons, and so forth. In the following, a case study about a railway bridge retrofitted by external posttensioning technique will be illustrated.
机译:人们发现,外部后张或无粘结预应力是翻新和增加现有结构寿命的强大工具。自1950年代以来,这种加固技术已成功应用于许多国家的桥梁结构中,并被发现可为各种桥梁类型和条件提供有效且经济的解决方案。无粘结预应力定义为这样一种系统,其中后张预应力筋或钢筋位于混凝土横截面的外部,并且预应力通过末端锚固,偏斜或鞍座传递到大梁。为响应对更快,更高效的运输系统的需求,世界范围内的重量和交通量稳步增长。除了增加合法的车辆载荷外,车辆的超载也是一个普遍的问题,在设计或评估桥梁时也必须考虑到这一点。结果,现在要求许多桥梁承受的载荷明显大于其原始设计载荷。其开裂结果仍因混凝土开裂,钢筋腐蚀,钢筋断裂等而恶化。在下文中,将说明有关通过外部后张技术改造的铁路桥梁的案例研究。

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