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Adhesion test for epoxy reinforcing using waste materials applied on concrete surfaces

机译:用废料施加在混凝土表面上的环氧加强粘附试验

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There are several methods currently used to protect concrete; among the most prominent of these is surface coating. Different types of materials, as well as various coating methods, are used for the purposes of protection and to strengthen the concrete surface; however, universally agreed criteria for the selection of these materials has not yet been established. This work thus aims to investigate the effects of reinforcing epoxy by using waste material (glass or porcelain) to prepare particulate composites as a form of coating material. Pull-off adhesion tests using controlled concrete specimens are one of the most common methods used to reveal the durability of surface coating systems. This method was thus also adopted for the current work. Samples with and without filler were exposed to hardness and pull off tests to determine the effect of adding the filler content to the epoxy in terms of variation to its properties. Epoxy was reinforced with filler with a 90-micron particle size. Composites of epoxy with varying percentages (0 to 40 wt%) of filler were prepared using a hand lay-up method. The experimental results showed that the addition of waste filler promotes adhesion properties. The 40% percentage of porcelain in the epoxy the largest effect on pull-off strength and hardness tests, reaching 16.12 MPa and 98.62, respectively. For glass composites, the highest hardness result was 97.92 for the 40% percentage. The final results showed a general improvement in the adhesion properties of composites when glass and porcelains were added, with the porcelain results being much better than those of glass. These results achieved the objective of the current work in terms of developing a better coating material for concrete substrates used for construction applications with reduced costs.
机译:目前有几种方法用于保护混凝土;其中最突出的是表面涂层。不同类型的材料以及各种涂料方法用于保护的目的,并加强混凝土表面;但是,尚未建立普遍商定的这些材料的标准。因此,这项工作旨在通过使用废料(玻璃或瓷)来制备颗粒复合材料作为涂料的形式来研究加强环氧树脂的影响。使用受控混凝土样本的拉出粘附试验是用于揭示表面涂层系统耐久性的最常用方法之一。因此,该方法也采用了当前的工作。具有和不含填料的样品暴露于硬度并剥离试验以确定在其性质的变化方面将填充物含量加入环氧树脂的效果。用90微米粒径加固环氧树脂,填料加固。使用手叠方法制备具有不同百分比(0至40wt%)填料的环氧树脂的复合材料。实验结果表明,添加废物填料促进粘附性。环氧树脂中瓷百分比对拉出强度和硬度试验的最大效果,分别达到16.12MPa和98.62。对于玻璃复合材料,40%百分比的最高硬度结果为97.92。最终结果表明,当加入玻璃和瓷器时,复合材料的粘附性质的一般性提高,瓷器结果远比玻璃更好。这些结果在开发用于施工应用的混凝土基板的更好的涂层材料方面实现了目前的工作目前的目的的目的。

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