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OVM体外预应力材料及体系
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(柳州市建筑机械总厂技术中心)

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强壮

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U448.27

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OVM External Prestressing Materials and Systems
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    摘要:

    近年来 髓着斜拉桥的复 斜拉索的防护问题在不断得以解决和完善,其相关技术也大量应用于解决体外预应力束的防腐一从而使制约体外预应力结构发展几十年的关键因素一钢索防腐蚀问题得到了很大程度的解决、这无疑大大促进了因腐蚀问题而停滞不前的体外预应力桥梁的发展。体内布筋建造的预应力混凝土建筑由于对摩擦造成的预应力损失及混凝土徐变、温度影响估计不足 破损严重,致使多数需要补强,荷载等级的提高也需要对原有建筑进行加固。加固的方法通常都不得不在原结构外部进行,即必须把预应力柬布置在混凝土截面以外,使体外索补强措成为一种主要的也是最积极的桥梁加固方法。体外预应力体系的优点得到了越来越多人的认可.特别是在发达国家,体外预应力技术得到广泛运用。

    Abstract:

    In recent years, as the protection problems of cable-stayed bridges are constantly being solved and improved, the related technology is also applied to the corrosion prevention of extracorporeal prestressing bundles, thus the problem of corrosion prevention of steel cables, which has been a key factor restricting the development of extracorporeal prestressing structures for several decades, has been solved to a large extent, and this undoubtedly greatly promotes the development of extracorporeal prestressing bridges, which have been stagnant due to the problem of corrosion. Prestressed concrete buildings constructed with in vivo reinforcement are severely damaged due to underestimation of the loss of prestressing force due to friction and the effects of concrete creep and temperature, resulting in the need for most of them to be reinforced, and the increase in load ratings requires the reinforcement of the original building. The reinforcement method usually has to be carried out outside the original structure, i.e., the prestressing Cambodia must be arranged outside the concrete cross-section, so that the extracorporeal cable reinforcement has become a major and the most active bridge reinforcement method. The advantages of extracorporeal prestressing system have been recognized by more and more people. Especially in developed countries, extracorporeal prestressing technology is widely used.

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Qiangzhuang, Guan Bingliang OVM External Prestressing Materials and Systems. Prestress Technology 2001,5(01):2-9. 10.59238/j. pt.2001.01.001

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  • 在线发布日期: 2023-08-11
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