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Experimental Study of the Shear Strength of Bonded Concrete-Rock Interfaces: Surface Morphology and Scale Effect

机译:粘结混凝土岩界剪切强度的实验研究:表面形态和尺度效应

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摘要

The shear strength of the concrete-rock interface is a key factor to justify the stability of a hydraulic structure foundation. The Mohr-Coulomb failure criterion is usually used as shear strength and evaluated by extrapolating shear tests results carried out in a laboratory on small-sized samples. This paper presents an experimental study on the concrete-rock interface shear behavior. The effect of rock surface morphology on shear behavior was studied by performing laboratory direct shear tests on prepared square samples with a previously characterized rock surface. The scale effect and the test conditions were also studied by comparing the results to those obtained by performing usual laboratory shear tests on cored samples at lower scale. The tested interfaces were composed of the same concrete and granite and have a natural rock surface. The results displayed that the peak shear strength is strongly dependent on the concrete-rock bonding, the rock surface morphology and the applied normal load. A new surface morphology description tool was developed in order to characterize the main waviness. Moreover, the concrete-rock shear behavior at medium scale was reproduced by a 2D finite elements model to study the stress distribution along the sheared interface. Under low normal load, the concrete-rock adhesion is thus progressively mobilized according to the waviness on the rock surface and the local shear failure mechanisms depend on the type of this main waviness. Consequently the shear strength of a concrete-rock interface must be analyzed with respect to the various morphology aspects on its rock surface.
机译:混凝土岩界面的剪切强度是证明液压结构基础稳定性的关键因素。 MoHR-Coulomb失效标准通常用作剪切强度,并通过在实验室在小尺寸样品上进行的外推剪切试验进行评估。本文提出了对混凝土岩界面剪切行为的实验研究。通过使用先前表征的岩石表面进行制备的正方形样品进行实验室直接剪切试验,研究了岩体表面形态对剪切行为的影响。还通过将结果与通过在较低规模上进行芯样样品上进行通常的实验室剪切试验而获得的结果来研究规模效应和测试条件。经过测试的界面由相同的混凝土和花岗岩组成,并具有天然岩石表面。结果显示,峰值剪切强度强烈依赖于混凝土岩石键合,岩石表面形态和施加的正常负荷。开发了一种新的表面形态描述工具,以表征主要波纹。此外,通过2D有限元模型再现中尺度的混凝土岩剪切行为,以研究沿着剪切界面的应力分布。在低正常载荷下,根据岩石表面上的波纹逐渐动摇了混凝土岩粘合,并且局部剪切失效机构取决于该主要波纹的类型。因此,必须在其岩石表面上的各种形态方面分析混凝土岩界面的剪切强度。

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