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Enhancement of bonding efficiency between overlay and substrate concrete using Styrene-Butadiene Rubber Latex and different surface roughness methods

机译:使用苯乙烯 - 丁二烯橡胶胶乳和不同表面粗糙度方法提高覆盖与基板混凝土之间的粘合效率

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The present study aims to accurately assess the binding efficiency between the substrate and the overlay using Styrene-Butadiene Rubber Latex (SBR) and ordinary Portland cement as a bonding mortar. Four different roughening techniques for the substrate surface were compared: surface roughening with a steel wire brush;, surface roughening by scarifying double parallel grooves in one direction; surface roughening by scarifying double parallel grooves in two directions; and surface roughening by scarifying double parallel grooves in one direction, drilling the substrate, and fixing screws in the double grooves. A total of 24 repaired prism specimens were tested for flexural strength with 45° and 90° angles between overlay and substrate. The cylinder specimens were also tested for splitting tensile strength and for slant shear strength at a 30° angle between overlay and substrate. The repaired specimens were cured at 23±2°C for 28 days before the flexural, splitting, and slant shear strength tests were performed. The experimental tests indicated that the best bonding strength was obtained in flexural strength tests when the surfaces were roughened by scarifying, carefully drilling the substrate, and fixing screws in the double grooves at a 45° angle between overlay and substrate.
机译:本研究旨在使用苯乙烯 - 丁二烯橡胶胶乳(SBR)和普通波特兰水泥作为粘合砂浆准确地评估基材和覆盖物之间的结合效率。比较了基板表面的四种不同的粗糙化技术:用钢丝刷表面粗糙化;,通过在一个方向上吞噬双平行槽来表面粗糙化;表面粗糙度在两个方向上吞噬双平行槽;通过在一个方向上吞噬双平行槽,钻出基板,并将螺钉固定在双槽中的表面粗糙度。在覆盖和基板之间具有45°和90°角的弯曲强度测试了总共24个修复的棱镜样品。还测试气缸样品,用于分裂拉伸强度和在覆盖物和基板之间以30°角的倾斜剪切强度。在进行弯曲,分裂和倾斜剪切强度试验之前,将修复的样品在23±2℃下固化28天。实验测试表明,当通过在覆盖和基板之间以45°角粗糙地钻出表面粗糙化,在弯曲强度试验中获得最佳粘合强度。

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