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Determination of the repair grout volume to fill voids in external post-tensioned tendons

机译:确定填满外部后张筋中空隙的修补浆的量

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Recently, investigated failures of external post-tensioned (FT) tendons have called attention to the corrosion of strands in FT bridges, and the prevention of ongoing corrosion is required to secure their structural integrity. Since voids inside ducts can be a source for the ingress of water or deleterious chemicals, the vacuum grouting (VG) method and a volumeter for estimating amount of repair grouts were employed to fill voided ducts. However, the VG method is expensive and time-consuming for infield application because it requires an air-tight condition of entire ducts. Thus, latest research assessed three different repair grouting methods, and the pressure vacuum grouting (PVG) method was recommended in the field because it showed good filling capability in voided ducts and did not require an air-tight condition. Thus, a new method is required to estimate the volume of repair grouts because the PVG method is not applied in air-tight ducts. This research assesses the relationship between voided areas on ducts identified with soundings and required grout volume for repair using experimental results. The results show that the proposed equations and assumptions for estimating repair grout volume provide a sufficient amount of repair grouts for filling voided ducts.
机译:最近,对外部后张预应力(FT)筋的研究失败引起人们对FT桥中钢绞线腐蚀的关注,并且需要防止持续腐蚀以确保其结构完整性。由于管道内部的空隙可能是水或有害化学物质进入的源头,因此采用真空灌浆(VG)方法和定量器来估算修补水泥浆的数量,以填充空隙管道。但是,VG方法对于野外应用而言既昂贵又费时,因为它需要整个管道处于气密状态。因此,最新研究评估了三种不同的修补注浆方法,并且在现场推荐使用压力真空注浆(PVG)方法,因为该方法在空管中显示出良好的填充能力,并且不需要气密条件。因此,由于PVG方法未应用于气密管道中,因此需要一种新的方法来估计修补浆的体积。这项研究使用实验结果评估了用测深识别出的导管上的空隙区域与修补所需的灌浆量之间的关系。结果表明,所建议的方程式和估计维修灰浆量的假设为充填空管提供了足够数量的维修灰浆。

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