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Experimental Assessment of the Tensile Bond Strength of Mortar-Mortar Interfaces: Effects of Interface Roughness and Mortar Strength

机译:砂浆与砂浆界面的拉伸粘结强度的实验评估:界面粗糙度和砂浆强度的影响

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摘要

Concrete gravity dams are subject to external forces that can lead to sliding at the base and overturning about the toe. The latter may result in mobilization of the tensile bond strength of the concrete-rock interface at the dam heel. This article attempts to address this issue by experimentally characterizing the bond strength according to the "concrete" material strength and the interface surface roughness. Experimentation was conducted in a laboratory environment using mortar interface replicas to simulate concrete dams and medium-strength bedrock foundations. Two different mortar strengths and five different roughness profiles were assessed. The surface roughness was characterized using the slope root mean square "Z2" roughness parameter. The bond strength was determined by a direct tensile method. The analysis of variance method was used to assess parameter significance. Results showed meaningful tensile bond strength variation with respect to the interface roughness, but no variation was caused by different material strengths. Reported bond strengths may contribute to increase the accuracy in predicting the tensile bond of a concrete-rock interface. It may help engineers in the field of dam stability make more accurate predictions regarding dam overturning safety factors.
机译:混凝土重力坝会受到外力的作用,外力可能导致底部滑动并围绕脚趾翻转。后者可能会导致坝后跟处的混凝土-岩石界面的抗拉粘结强度动员。本文试图通过根据“混凝土”材料强度和界面表面粗糙度通过实验表征粘结强度来解决这个问题。实验是在实验室环境中使用砂浆界面复制品进行的,以模拟混凝土大坝和中等强度的基岩基础。评估了两种不同的灰浆强度和五种不同的粗糙度轮廓。使用粗糙度均方根“ Z 2”粗糙度参数表征表面粗糙度。粘合强度通过直接拉伸法测定。方差分析法用于评估参数的显着性。结果表明,相对于界面粗糙度,有意义的抗拉强度变化,但是没有变化是由不同的材料强度引起的。报告的粘结强度可能有助于提高预测混凝土与岩石界面的拉伸粘结的准确性。它可以帮助大坝稳定性领域的工程师对大坝倾覆安全系数做出更准确的预测。

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