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Procedure Inversion Effect Analysis of Final System Transformation of Prestressed Concrete Continuous Girder Bridge

机译:预应力混凝土连续梁桥最终系统变换的过程反演分析

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When the cantilever construction is adopted by the prestressed concrete continuous girder bridge, the order of two key procedures between removing temporary support and tensing remanent prestressed cable is used to be ignored. In order to study the influence of procedure inversion, the influences on bridge shape, stress distribution and prestressing loss were calculated for one common prestressed continuous concrete box girder bridge by MIDAS CIVIL 2006, respectively. The obtained result presents that: the influence on the bridge shape and the prestressing loss are not apparent, but the influence on the stress distribution is serious; the maximal compressive stress of procedure inversion is more 42.3% than common construction procedure only by tensing the remaining steel beams at box girder; especially, the combining area between the box girder and temporary support is easy to pull out. So, the procedure inversion construction method can't be accepted.
机译:当预应力的混凝土连续梁桥采用悬臂结构时,忽略了消除临时支撑和拉紧预应力电缆之间的两个关键程序的顺序被忽略。为了研究程序反演的影响,对于Midas Cinal 2006的一个普通预应力连续混凝土箱梁桥分别计算了对桥梁形状,应力分布和预应力损失的影响。所获得的结果表明:对桥梁形状的影响和预应力损失是不明显的,但对应力分布的影响是严重的;通过在箱梁处拉紧剩余的钢梁,程序反转的最大压缩应力比常见施工过程更高为42.3%;特别是,箱梁和临时支撑之间的组合区域易于拉出。因此,不能接受手术反转施工方法。

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