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水力发电学报

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三向变形条件下铜片止水破坏准则研究

  

  • 出版日期:2024-04-15 发布日期:2024-04-15

Failure Criterion of Copper Water-stop under Three-Dimensional Displacement

  • Online:2024-04-15 Published:2024-04-15

摘要: 铜片止水是水工混凝土结构分缝之间最重要的止水构件。混凝土结构在自重和水荷载作用下,常产生不均匀变形,使结构分缝之间的铜片止水产生拉伸(压缩)、沉陷和剪切三向变形(相对位移)。铜片止水的安全性取决于三向变形的量值,常通过三个方向的位移单独判断,未考虑三向位移的耦合作用。本文设计制作了两种尺寸共计40个铜片止水试件,通过三向加载独立控制的试验平台对铜片止水进行了不同拉伸、沉降位移的剪切试验,研究了铜片止水的剪切变形规律和破坏形态,得到了三维位移空间中的破坏包络面,提出了一个三向变位条件下铜片止水的变形破坏准则,可用于铜片止水的安全性判断。

Abstract: Copper water-stop is the most important waterproofing component between joints in hydraulic concrete structures. Concrete structure often experience uneven deformation under the action of gravity and hydrostatic pressure, resulting in tension (compression), settlement, and shear deformation (relative displacement) between the two wings of copper water-stop. The safety of copper water-stop depends on the value of the three-dimensional deformation, which is often judged by the displacement in three directions separately, without considering the coupling effect of three-dimensional displacement. In this paper, a total of 40 copper water-stop specimens of two sizes were designed and produced. Shear tests under different tensile and settlement displacement were conducted with these copper water-stops using a test platform that allows independent control of three directions. The shear deformation law and failure mode of copper water-stops were studied, and the failure envelope surface in the three-dimensional displacement space was obtained. A deformation and failure criterion for copper water-stop under three-dimensional displacement conditions was proposed, which can be used to judge the safety of similar copper water-stops.

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