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Flexural and Shear Bond Performance of Polyurethane-Mortar Interface under Micro-and Macroscale

机译:微观尺度下聚氨酯-砂浆界面的抗剪剪切性能

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Polyurethane materials have been widely applied in the mending of cementitious materials, and the mending efficiency is highly impacted by the bond strength between the polyurethane materials and the cement base. This paper aims to evaluate both the shear and flexural bond strength between cement mortar and polyurethane with different water and modifier contents. The shear and flexural bond strengths were examined using a slant shear test and three-point bending test on mortar samples prepared with a polyurethane interface. The effect of the polyurethane/water ratio on the bond strength was first examined, and both the highest shear and flexural bond strength were achieved for the samples with a 30% polyurethane/water ratio. To further enhance the bond strength, ethylene-vinyl acetate (EVA) was further added to the polyurethane, and the effect of the replacement ratio on the bond strength was further examined. The macro-size strength tests indicated the highest strength was achieved for the polyurethane samples that had a 10% EVA replacement ratio. The mechanism behind the effect of water and EVA content was further examined with a scanning electron microscope (SEM) and atomic force microscope (AFM). The examined relationship between water and EVA content and bond strength can provide useful information for the field application of polyurethane materials.
机译:聚氨酯材料已被广泛地应用于水泥材料的修补中,并且聚氨酯材料与水泥基体之间的粘结强度极大地影响了修补效率。本文旨在评估不同含水量和改性剂含量的水泥砂浆与聚氨酯之间的剪切和挠曲粘结强度。使用倾斜剪切试验和三点弯曲试验,对用聚氨酯界面制备的砂浆样品进行了剪切和挠曲粘结强度的检查。首先检查了聚氨酯/水比例对粘合强度的影响,对于聚氨酯/水比例为30%的样品,其剪切强度和弯曲粘合强度均达到最高。为了进一步提高粘结强度,将乙烯-乙酸乙烯酯(EVA)进一步添加到聚氨酯中,并且进一步研究了置换率对粘结强度的影响。宏观强度测试表明,EVA替代率为10%的聚氨酯样品达到了最高强度。使用扫描电子显微镜(SEM)和原子力显微镜(AFM)进一步检查了水和EVA含量影响的机理。水和EVA含量与粘结强度之间的关系可以为聚氨酯材料的现场应用提供有用的信息。

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